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專家信息:
關(guān)柏鷗 ,男,1972年出生,教授,暨南大學(xué)光子技術(shù)研究所所長,博士生導(dǎo)師,國家杰出青年科學(xué)基金獲得者,科技部中青年科技創(chuàng)新領(lǐng)軍人才。
教育及工作經(jīng)歷:
1994年,本科畢業(yè)于四川聯(lián)合大學(xué)(現(xiàn)四川大學(xué))應(yīng)用物理系。
1997年和2000年在南開大學(xué)現(xiàn)代光學(xué)研究所獲得碩士和博士學(xué)位。攻讀博士學(xué)位期間被派往香港理工大學(xué)聯(lián)合培養(yǎng),其后在香港理工大學(xué)從事博士后研究。
2005年,加入大連理工大學(xué)物理與光電工程學(xué)院,任教授、博士生導(dǎo)師,建立了遼寧省先進(jìn)光電子技術(shù)重點(diǎn)實(shí)驗(yàn)室并擔(dān)任實(shí)驗(yàn)室主任。
2009年,加入暨南大學(xué),創(chuàng)建了暨南大學(xué)光子技術(shù)研究所并擔(dān)任所長。
主講課程:
資料更新中……
培養(yǎng)研究生情況:
博士:
王岫鑫 昆明理工大學(xué)
孫丹丹 大連理工大學(xué)
高帥 暨南大學(xué)
孫立朋 暨南大學(xué)
姬崇軻
11級研究生:
譚艷珍 中國礦業(yè)大學(xué)
尚立彬 山東大學(xué)
齊麟 湖北汽車學(xué)院
12級研究生:
何軍 哈爾濱工業(yè)大學(xué)(威海分校)
劉凌暉 大連理工大學(xué)
梁貽智 廣東工業(yè)大學(xué)
孫立朋獲得獎(jiǎng)項(xiàng):
1. 獲得第22屆國際光纖傳感器會(huì)議(OFS2012)最佳學(xué)生論文獎(jiǎng)“Best Student Paper Award”。
2. 獲得“2012年碩士研究生國家獎(jiǎng)學(xué)金”。
3. 以第一作者身份、關(guān)柏鷗教授為通信作者發(fā)表的論文“Four-port microfiber long-period grating sensors”,被評為第五屆歐洲光纖傳感器會(huì)議(EWOFS2013) “New Idea”最佳論文。
4. 2013.06 2013年暨南大學(xué)研究生科研論文獎(jiǎng)。
碩士研究生孫立朋
榮獲第22屆國際光纖傳感器會(huì)議(OFS-22)最佳學(xué)生論文獎(jiǎng)
研究方向:
光纖光子器件,光纖傳感技術(shù),微波光子技術(shù)。
承擔(dān)科研項(xiàng)目情況:
主要從事光纖器件、光纖傳感技術(shù)、微波光子學(xué)技術(shù)等方面的研究,主持國家杰出青年基金項(xiàng)目1項(xiàng)、國家自然科學(xué)基金重點(diǎn)項(xiàng)目2項(xiàng)、國家自然科學(xué)基金面上項(xiàng)目1項(xiàng)、省部級項(xiàng)目7項(xiàng)。
1. 國家杰出青年科學(xué)基金項(xiàng)目, 光纖傳感器(61225023),關(guān)柏鷗,2013-2016,280萬元。
2. 國家自然科學(xué)基金重點(diǎn)項(xiàng)目, 雙頻干涉型光纖激光聲矢量傳感器基礎(chǔ)問題和關(guān)鍵技術(shù)研究(61235005),關(guān)柏鷗,2013-2017,300萬元。
3. 國家自然科學(xué)基金面上項(xiàng)目,低溫環(huán)境下快速響應(yīng)可復(fù)用光纖氫傳感器研究(61177074),關(guān)柏鷗,2012-2015,68萬元。
4. 廣東省自然科學(xué)基金研究團(tuán)隊(duì)項(xiàng)目,面向電力監(jiān)測光纖傳感網(wǎng)絡(luò)關(guān)鍵技術(shù)研究(S2013030013302),關(guān)柏鷗,2013-2017,200萬元。
5. 廣東省高等學(xué)校高層次人才項(xiàng)目,長距離分布式光纖傳感技術(shù)研究,關(guān)柏鷗,2012-2014,50萬元。
6. 廣東省高校國際暨港澳臺科技合作創(chuàng)新平臺項(xiàng)目, 高性能布里淵分布式光纖傳感系統(tǒng)研制與應(yīng)用研究(2012gjhz0004),關(guān)柏鷗,2012-2015,50萬元。
7. 教育部博士點(diǎn)基金博導(dǎo)基金, 微納光纖光柵DNA生物傳感器研究(20114401110006),關(guān)柏鷗,2012-2014,12萬元。
8. 廣州市科技計(jì)劃項(xiàng)目對外科技合作專項(xiàng), 光纖光子學(xué)對外科技合作平臺(2012J5100028),關(guān)柏鷗,2012-2015,55萬元。
9. 中國電科29所委托項(xiàng)目, 雙頻光纖激光器陣列,關(guān)柏鷗,2012-2013,58萬元。
10. 哈爾濱工業(yè)大學(xué)委托項(xiàng)目,高溫光纖光柵傳感器制備,關(guān)柏鷗,2013-2013,28萬元。
11. 韶關(guān)研究院委托項(xiàng)目,光纖光柵濾波器,關(guān)柏鷗,2012-2012,6.5萬元。
12. 暨南大學(xué)科研培育與創(chuàng)新基金(創(chuàng)新團(tuán)隊(duì)項(xiàng)目), 光纖傳感與通信(21609102),關(guān)柏鷗,2010-2012,150萬元。
13. 暨南大學(xué)國家杰青配套項(xiàng)目,光纖傳感器(61225023),關(guān)柏鷗,2013-2013,200萬元。
14. 暨南大學(xué)科研培育與創(chuàng)新基金(重大重點(diǎn)培育項(xiàng)目),光纖傳感協(xié)同創(chuàng)新中心,關(guān)柏鷗,2013-2015,300萬元。
科研成果:
1.橢形微納光纖超高靈敏度折射率傳感器
微納光纖器件小組在超高靈敏度折射率傳感器方面取得新進(jìn)展。提出CO2激光器表面切割制備橢形光纖的方法。該方法切割后的光纖表面平滑,制備快速。改變激光器輸出功率能夠靈活調(diào)節(jié)橢形光纖的橢圓率,進(jìn)而實(shí)現(xiàn)了對拉錐后微納光纖雙折射的有效調(diào)節(jié),能夠進(jìn)一步提高橢形微納光纖的雙折射。基于該微納光纖構(gòu)成的折射率傳感器,其靈敏度被進(jìn)一步提高,達(dá)到200000nm/RIU的量級。高靈敏度特性為其在生物化學(xué)領(lǐng)域應(yīng)用提供了先天優(yōu)勢。
橢形微納光纖制備及傳感測量結(jié)果
2.傾斜光纖光柵細(xì)胞密度傳感器
提出基于傾斜光纖光柵“Cut-off模正交偏振差分檢測”的生物細(xì)胞密度傳感新機(jī)制,研制正交偏振傾斜光纖光柵折射率傳感器,該技術(shù)能夠?qū)崿F(xiàn)對不同細(xì)胞密度人類急性白血病細(xì)胞的精確鑒別,用以研究細(xì)胞非生理性密度與其折射率的關(guān)系,驗(yàn)證了“非生理性細(xì)胞密度變化”,為研究細(xì)胞抗藥性、細(xì)胞生理新特性提供依據(jù)。
傾斜光纖光柵細(xì)胞密度傳感機(jī)理與系統(tǒng)
3.微納光纖光柵DNA傳感器
提出基于“微納光纖光柵(mFBG)”的無標(biāo)記的光纖生物傳感器實(shí)現(xiàn)DNA雜交測量。由于一根微納光纖光柵具有相同的溫度特性和不同的折射率特性,因此通過監(jiān)測這兩個(gè)共振波之間的波長間隔實(shí)現(xiàn)最小的交叉靈敏度測量。該傳感器功能化依賴于多聚賴氨酸(PLL)連接光纖和探針DNA,從而首次成功實(shí)現(xiàn)實(shí)時(shí)檢測DNA雜交。該技術(shù)是衛(wèi)生防疫、疾病診斷、藥物研究、環(huán)境科學(xué)和生物工程的一個(gè)重要方法。
微納光纖光柵DNA傳感機(jī)理與系統(tǒng)
4.雙頻光纖激光力傳感器
我們以雙頻光纖光柵激光器為傳感元件,通過對激光器輸出的拍頻信號進(jìn)行監(jiān)測,最近幾年來已經(jīng)實(shí)現(xiàn)了對側(cè)向壓力、振動(dòng)、聲波等外界擾動(dòng)的測量。對于靜態(tài)和準(zhǔn)靜態(tài)測量來說,探測能力受限于拍頻信號的低頻噪聲。我們最近系統(tǒng)研究了泵浦光偏振態(tài)和腔外光反饋等因素對拍頻信號噪聲特性的影響機(jī)理,并以此為基礎(chǔ)實(shí)現(xiàn)了拍頻信號低頻噪聲的有效抑制,提升了信號輸出的穩(wěn)定性。拍頻信號頻率浮動(dòng)從1.5MHz降低到5kHz,從而大幅提升了傳感器的探測能力。在最近的第23屆OFS會(huì)議上,我們報(bào)道了采用雙頻光纖光柵激光器進(jìn)行微小重量探測的結(jié)果,最小重量分辨率為0.28毫克。
5.光子晶體光纖在線式微流控折射率傳感器
當(dāng)待測樣品置于光子晶體光纖的空氣孔里面時(shí),它離纖芯更近,與纖芯中所傳輸光波的相互作用更強(qiáng),可獲得更高的測量靈敏度。但是,微流樣品如何進(jìn)入和流出光子晶體光纖一直是一個(gè)難題。針對此問題,我們設(shè)計(jì)研制出橫截面為C形狀的特種光纖,將C形光纖熔接在光子晶體光纖與普通光纖之間,為樣品的進(jìn)出提供通道,從而首次實(shí)現(xiàn)了一種光子晶體光纖在線式微流折射率傳感器。隨后,我們采用電弧放電方式對光子晶體光纖橫截面空氣孔形貌加以改進(jìn),選擇性地利用中央兩個(gè)空氣孔通道,將測量靈敏度提升了70%。值得注意的是,實(shí)驗(yàn)測得的折射率靈敏度8699nm/RIU與理論模擬的折射率靈敏度8675nm/RIU非常吻合。
6.寬帶可調(diào)諧光纖光子微波信號源陣列
近年來,電子對抗用雷達(dá)等設(shè)備對微波信號源的帶寬、輸出功率、調(diào)諧速度和頻譜純度等性能的要求越來越高,傳統(tǒng)上用電學(xué)方法產(chǎn)生微波信號的方案越來越無法滿足這些要求,采用光學(xué)手段實(shí)現(xiàn)寬帶微波信號的產(chǎn)生受到越來越多的關(guān)注。我們以高反射率光纖光柵直寫為技術(shù)基礎(chǔ),基于短腔單縱模雙頻光纖激光器結(jié)構(gòu),結(jié)合PZT機(jī)械壓力調(diào)諧方式,實(shí)現(xiàn)了微波信號源的寬帶可調(diào)。我們基于這一技術(shù),通過工藝上的不斷改進(jìn),研制了寬帶可調(diào)諧光纖光子微波信號源陣列,在信號質(zhì)量、調(diào)諧范圍等指標(biāo)上滿足用戶需求,目前原理性樣機(jī)已順利通過驗(yàn)收。
7.高效微納光纖光柵寫制技術(shù)及其應(yīng)用
微納光纖光柵由于其非常強(qiáng)的倏逝場,在生化傳感、可調(diào)諧光子器件等領(lǐng)域有著巨大的應(yīng)用潛力。但是,基于普通單模光纖拉制的微納光纖光柵寫入效率低、光柵強(qiáng)度弱,極大地制約了其應(yīng)用和發(fā)展。針對這一問題,本課題組首次提出利用多模光纖拉制微納光纖并在其上刻寫光纖光柵,有效地提高了光柵耦合系數(shù),1分鐘的曝光時(shí)間即可獲得反射率近15dB的mFBG。在此基礎(chǔ)上,進(jìn)一步實(shí)現(xiàn)了溫度補(bǔ)償?shù)恼凵渎蕚鞲衅鳌⒚鈽?biāo)記DNA傳感器、以及基于聲致折射率變化的超聲波傳感器。
高效率微納光纖光柵增長過程
光柵耦合系數(shù)增強(qiáng)機(jī)制
溫度補(bǔ)償折射率傳感
8.正交偏振光纖二維振動(dòng)矢量傳感
傾斜光纖光柵傳感器研究小組在光纖二維振動(dòng)傳感器研究方面取得進(jìn)展,在多模光纖上制備傾斜光纖布喇格光柵,利用多模傾斜光纖布喇格光柵高階纖芯奇模的強(qiáng)偏振依賴性和光譜分立性,通過正交偏振解調(diào)技術(shù)與矢量合成分析方法,實(shí)現(xiàn)了基于單一傾斜光纖光柵的二維振動(dòng)方向識別。與此同時(shí),通過優(yōu)化光柵結(jié)構(gòu)與寫制工藝,壓縮單個(gè)傳感器占用帶寬,并配合高速編碼調(diào)制技術(shù),實(shí)現(xiàn)傳感器的波分復(fù)用與時(shí)分復(fù)用。
正交偏振光纖二維振動(dòng)矢量傳感探頭與傳感特性
9.結(jié)構(gòu)型微納光纖長周期光柵
微納光纖器件小組在結(jié)構(gòu)型微納光纖長周期光柵方面取得進(jìn)展。以直徑為5~10μm的微納光纖為軸,在其表面以直徑為1~5μm的另一根微納光纖纏繞,構(gòu)成周期一致的螺旋結(jié)構(gòu),形成周期性折射率調(diào)制,當(dāng)滿足相位匹配條件時(shí),構(gòu)成結(jié)構(gòu)型微納光纖長周期光柵。該光柵能夠?qū)鹘y(tǒng)長周期光纖光柵損耗掉的能量有效的收集并傳輸,同時(shí)具備帶通和帶阻特性,因此,該四端口結(jié)構(gòu)型微納光纖長周期光柵,在濾波和傳感方面具備良好的應(yīng)用前景。
結(jié)構(gòu)型微納光纖長周期光柵結(jié)構(gòu)圖、顯微鏡照片
結(jié)構(gòu)型微納光纖長周期光柵光譜特性
10.寬帶可調(diào)諧微波光子濾波器
微波光子信號處理研究小組在寬帶可調(diào)諧微波光子濾波器研究方面取得進(jìn)展。使相位調(diào)制的信號與布里淵泵浦反向傳輸,對應(yīng)一定的調(diào)制頻率,相位調(diào)制的一個(gè)邊帶會(huì)位于布里淵窄帶增益范圍內(nèi),從而兩個(gè)調(diào)制邊帶幅值平衡被打破,在終端可探測到相應(yīng)的微波信號。而對應(yīng)其它調(diào)制頻率,兩個(gè)相位調(diào)制邊帶不受影響,從而保持幅值相同,相位相反,在探測端得不到微波信號。整個(gè)系統(tǒng)相當(dāng)于一個(gè)窄帶微波光子濾波器。通過調(diào)整布里淵泵浦波長,可達(dá)到微波光子濾波器調(diào)諧的目的。
基于相位調(diào)制及布里淵放大的微波光子濾波器
11.矩形微納光纖超高折射率靈敏度傳感器
微納光纖器件小組在基于保偏微納光纖Sagnac干涉型折射率傳感器方面取得進(jìn)展,用外包層為矩形結(jié)構(gòu)的單模光纖,經(jīng)火焰拉錐制成的矩形微納光纖擁有清晰的二重對稱結(jié)構(gòu),具備很高的雙折射特性,結(jié)合Sagnac 干涉儀結(jié)構(gòu)構(gòu)成偏振干涉型傳感器,傳感器的折射率敏感性對群雙折射的依賴使得該傳感器具備超高折射率靈敏度(~20000nm/RIU),同時(shí)該結(jié)構(gòu)具備極好的溫度穩(wěn)定性。利用單根矩形微納光纖構(gòu)成的傳感器同時(shí)具備結(jié)構(gòu)簡單小巧,更易于嵌入光學(xué)系統(tǒng)。
矩形光纖及矩形微納光纖截面圖
矩形微納光纖折射率傳感器
12.超寬帶信號產(chǎn)生
微波光子信號處理研究小組在超寬帶信號產(chǎn)生方面取得進(jìn)展,將保偏光纖光柵作為甄頻器,相位調(diào)制光信號入射于保偏光纖光柵,通過調(diào)整保偏光纖光柵的反射光譜,實(shí)現(xiàn)幾種超寬帶脈沖形狀的轉(zhuǎn)換。入射光位于光柵反射譜負(fù)線性斜率時(shí),產(chǎn)生負(fù)單周脈沖,位于正線性斜率,產(chǎn)生正單周脈沖,同樣,位于高階斜率會(huì)產(chǎn)生高階脈沖。實(shí)驗(yàn)中無需調(diào)節(jié)激光器波長,僅通過調(diào)節(jié)偏振控制器即可實(shí)現(xiàn)脈沖形狀調(diào)制及脈沖偏振調(diào)制。
基于保偏光纖光柵的超寬帶微波信號產(chǎn)生
代表性英文論文:
2015
1.Yuan Cao, E. H. W. Chan, Xudong Wang, Xinhuan Feng, Bai-ou Guan;“Photonic microwave quadrature filter with low phase imbalance and high signal-to-noise ratio performance”,Optics Letters, vol. 40, no. 20, pp. 4663-4666, 2015.
2.Yuan Cao, Tuan Guo, Xudong Wang, Dandan Sun, Yang Ran, Xinhuan Feng, Bai-ou Guan;“Resolution-improved in situ DNA hybridization detection based on microwave photonic interrogation”,Optics Express, vol. 23, no. 21, pp. 27061-27070, 2015.
3.Xudong Wang, Jianxun Yang, Erwin H. W. Chan, Xinhuan Feng, Bai-ou Guan;"Photonic microwave phase shifter based on dual-sideband phase-control technique";Optics Letters, vol. 40, no. 15, pp. 3508-3511, Aug 1, 2015.
4.Yang Ran, Long Jin, Shuai Gao, Li-Peng Sun, Yun-Yun Huang, Jie Li, Bai-ou Guan;"Type IIa Bragg gratings formed in microfibers";Optics Letters, vol. 40, no. 16, pp. 3802-3805, Aug 15, 2015.
5.Yuan Cao, Feng Li, Xinhuan Feng, Chao Lu, Bai-ou Guan, P. K. A. Wai;"Investigation of microwave photonic filter based on multiple longitudinal modes fiber laser source";Optical Fiber Technology, vol. 23, pp. 122-128, Jun 2015.
6.Wei He, Linghao Cheng, Qiang Yuan, Yizhi Liang, Long Jin, Bai-ou Guan;"Magnetostrictive composite material-based polarimetric heterodyning fiber-grating laser miniature magnetic field sensor";Chinese Optics Letter, vol. 13, no. 5, May 10, 2015.
7.Yanbing Jin, H. W. Erwin Chan, Xinhuan Feng, Xudong Wang, Bai-ou Guan;"Tunable negative coefficient microwave photonic filter based on a polarization modulator and a polarization beam interferometer";Chinese Optics Letter, vol. 23, no. 9, May 10, 2015.
8.J. Yang, E. H. W. Chan, X. Wang, X. Feng, B. Guan;"Broadband photonic microwave phase shifter based on controlling two RF modulation sidebands via a Fourier-domain optical processor";Optics Express, vol. 23, no. 9, pp. 12100-12110, May 4, 2015.
9.Shuang Yao, Shu Ying Chen, Atasi Pal, Kort Bremer, Bai Ou Guan, Tong Sun, Kenneth T. V. Grattan;"Compact Tm-doped fibre laser pumped by a 1600 nm Er-doped fibre laser designed for environmental gas sensing";Sensor and Actuators A-Physical, vol. 226, pp. 11-20, May 1, 2015.
10.Jingjuan Zhou, Ai-ping Luo, Zhichao Luo, Xudong Wang, Xinhuan Feng, Bai-ou Guan;"Dual-wavelength single-longitudinal-mode fiber laser with switchable wavelength spacing based on a graphene saturable absorber";Photonics Research, vol. 3, no. 2, pp. A21-A24, Apr 2015.
11.Yanbing Jin, Xinhuan Feng, Feng Li, Xudong Wang, Baiou Guan, Jinhui Yuan, P. K. A. Wai;"Gigahertz single source IIR microwave photonic filter based on coherence managed multi-longitudinal-mode fiber laser";Optics Express, vol. 23, no. 4, pp. 4277-4288, Feb 23, 2015.
12.X. Wang, J. Yang, E. H. W. Chan, X. Feng, B. Guan;"All-Optical Continuously Tunable Flat-Passband Microwave Photonic Notch Filter";IEEE Photonics Journal, vol. 7, no. 1, Feb 2015.
13.Y. Wang, E. H. W. Chan, X. Wang, X. Feng, B. Guan;"Continuously Tunable Flat-Passband Microwave Photonic Notch Filter Based on Primary and Secondary Tap Distribution Impulse Response";IEEE Photonics Journal, vol. 7, no. 1, Feb 2015.
14.Qiang Yuan, Yizhi Liang, Long Jin, Linghao Cheng, Bai-ou Guan;"Implementation of a widely tunable microwave signal generator based on dual-polarization fiber grating laser";Applied Optics, vol. 54, no. 4, pp. 895-900, Feb 1, 2015.
2014
15.Jie Li, Hao Wang, Li-Peng Sun, Yunyun Huang, Long Jin, Bai-ou Guan;"Etching Bragg gratings in Panda fibers for the temperature-independent refractive index sensing";Optics Express, vol. 22, no. 26, pp. 31917-31923, Dec 29, 2014.
16.Yizhi Liang, Long Jin, Linghao Cheng, Bai-ou Guan;"Stabilization of microwave signal generated by a dual-polarization DBR fiber laser via optical feedback";Optics Express, vol. 22, no. 24, pp. 29356-29362, Dec 1, 2014.
17.Jingjuan Zhou, Xinhuan Feng, Yuzhuo Wang, Zhaohui Li, Bai-ou Guan;"Dual-wavelength single-frequency fiber laser based on FP-LD injection locking for millimeter-wave generation";Optics and Laser Technology, vol. 64, pp. 328-332, Dec 2014.
18.Long Jin, Yizhi Liang, Meng-Ping Li, Linghao Cheng, Jie Li, Bai-ou Guan;"A 16-Element Multiplexed Heterodyning Fiber Grating Laser Sensor Array";Journal of Lightwave Technology, vol. 32, no. 22, pp. 3808-3813, Nov 15, 2014.
19.Dandan Sun, Tuan Guo, Yang Ran, Yunyun Huang, Bai-ou Guan;"In-situ DNA hybridization detection with a reflective microfiber grating biosensor";Biosensors & Bioelectronics, vol. 61, pp. 541-546, Nov 15, 2014.
20.Fu Liu, Tuan Guo, Chuang Wu, Bai-ou Guan, Chao Lu, Hwa-Yaw Tam, Jacques Albert;"Wideband-adjustable reflection-suppressed rejection filters using chirped and tilted fiber gratings";Optics Express, vol. 22, no. 20, pp. 24430-24438, Oct 6, 2014.
21.Chuang Wu, Zhengyong Liu, A. Ping Zhang, Bai-ou Guan, Hwa-Yaw Tam;"In-line open-cavity Fabry-Perot interferometer formed by C-shaped fiber fortemperature-insensitive refractive index sensing";Optics Express, vol. 22, no. 18, pp. 21757-21766, Sep 8, 2014.
22.Chuang Wu, Ming-Leung Vincent Tse, Zhengyong Liu, Bai-ou Guan, A. Ping Zhang, Chao Lu, Hwa-Yaw Tam;"In-line microfluidic integration of photonic crystal fibres as a highly sensitive refractometer";Analyst, vol. 139, no. 21, pp. 5422-5429, 2014.
23.Li-Peng Sun, Jie Li, Shuai Gao, Long Jin, Yang Ran, Bai-ou Guan;"Fabrication of elliptic microfibers with CO2 laser for high-sensitivity refractive index sensing";Optics Letters, vol. 39, no. 12, pp. 3531-3534, Jun 15, 2014.
27.Lin Qi, Long Jin, Yizhi Liang, Linghao Cheng, Bai-ou Guan;"Efficiency Enhancement of Optical Tuning for Bragg Gratings in Rare-Earth Doped Fibers";IEEE Photonics Technology Letters, vol. 26, no.12, pp. 1188-1191, Jun 15, 2014.
25.Xiuxin Wang, Long Jin, Jie Li, Yang Ran, Bai-ou Guan;"Microfiber interferometric acoustic transducers";Optics Express, vol. 22, no. 7, pp. 8126-8135, 2014.
26.Minggui Wan, Xinhuan Feng, Yanbing Jin, Zhaohui Li, Bai-ou Guan;"Multiwavelength erbium-doped fiber laser based on a WaveShaper";Optical Engineering, vol. 53, no. 5, May 2014.
27.Xiaodong Xie, Jie Li, Li-Peng Sun, Xiang Shen, Long Jin, Bai-ou Guan;"A high-sensitivity current sensor utilizing CrNi wire and microfiber coils";Sensors, vol. 14, no. 5, pp. 8423-8429, May 12, 2014.
28.Tuan Guo, Fu Liu, Bai-ou Guan;"Polarimetric multi-mode tilted fiber grating sensors";Optics Express, vol. 22, no. 6, pp. 7330-7336, Mar 24, 2014.
2013
29.Bai-ou Guan, Jie Li, Long Jin, Yang Ran;"Fiber Bragg gratings in optical microfibers";Optical Fiber Technology, vol. 19, no. 6, pp. 793-801, Dec 2013.
30.Li-Peng Sun, Jie Li, Yanzhen Tan, Shuai Gao, Long Jin, Bai-ou Guan;"Bending effect on modal interference in a fiber taper and sensitivity enhancement for refractive index measurement";Optics Express, vol. 21, no. 22, pp. 26714–2672029, Nov 4, 2013.
31.Yanzhen Tan, Lipeng Sun, Long Jin, Jie Li, Bai-ou Guan;"Temperature-Insensitive Humidity Sensor Based on a Silica Fiber Taper Interferometer";IEEE Photonics Technology Letters, vol. 25, no. 22, pp. 2201-2204, Nov 15, 2013.
32.Long Jin, Bai-ou Guan, Huifeng Wei;"Sensitivity Characteristics of Fabry-Perot Pressure Sensors Based on Hollow-Core Microstructured Fibers";Journal of Lightwave Technology, vol. 31, no.15, pp.2526-2532, Aug 1, 2013.
33.Tuan Guo, Fu Liu, Fa Du, Zhaochuan Zhang, Chunjie Li, Bai-ou Guan, Jacques Albert;"VCSEL-powered and polarization-maintaining fiber-optic grating vector rotation sensor";Optics Express, vol. 21, no. 16, Aug 2013.
34.Fu Liu,Tuan Guo, JianGuo Liu, XiaoYang Zhu, Liu Yu, Bai-ou Guan, Albert Jacques;"High-sensitive and temperature-self-calibrated tilted fiber grating biological sensing probe";Chinese Science Bulletin, vol. 58, no. 21, pp. 2611-2615, Jul 2013.
2012
35. Li-Peng Sun, Jie Li, Long Jin, and Bai-ou Guan*,"Structural microfiber long-period gratings"Optics Express, Vol. 20, No. 16, pp. 18079-18084, July 30, 2012.
36. Yang Ran, Long Jin, Li-Peng Sun, Jie Li, and Bai-ou Guan*,"Bragg grating in rectangular microfiber for temperature independent refractive index sensing,"Optics Letters, Vol. 37, No. 13, pp. 2649-2651, July 1, 2012.
37. Ruichen Tao, Xinhuan Feng, Yuan Cao, Zhaohui Li, Bai-ou Guan,"Widely tunable single bandpass microwave photonic filter based on phase modulation and stimulated Brillouin scattering,"IEEE Photonics Technology Letters, Vol. 24, No. 13, pp. 1097-1099, July 1, 2012.
38. Long Jin, Zhan Quan, Yan-Nan Tan, and Bai-ou Guan*,"Highly sensitive hydrostatic pressure sensing with an embedded dual-polarization fiber grating laser,"IEEE Photonics Technology Letters, Vol. 24, No. 12, pp. 1060-1062, June 15, 2012.
39. Li-Peng Sun, Jie Li, Yanzhen Tan, Xiang Shen, Xiaodong Xie, Shuai Gao, and Bai-ou Guan*,"Miniature highly-birefringent microfiber loop with extremely-high refractive index sensitivity,"Optics Express, Vol. 20, No. 9, pp. 10180-10185, Apr. 23, 2012.
40. Yan-Nan Tan, Long Jin, Linghao Cheng, Zhan Quan, Mengping Li, Bai-ou Guan*,"Multi-octave tunable RF signal generation based on a dual-polarization fiber grating laser,"Optics Express, Vol. 20, No. 7, pp. 6961-6967, Mar. 26, 2012.
41. Long Jin, Yan-Nan Tan, Zhan Quan, Mengping Li, Bai-ou Guan*,"Strain-insensitive temperature sensor based on dual polarization fiber grating laser,"Optics Express, Vol. 20, No. 6, pp. 6021-6028, Mar. 12, 2012.
42. Yang Ran, Yan-Nan Tan, Li-Peng Sun, Shuai Gao, Jie Li, Long Jin, Bai-ou Guan*,"High-efficiency UV-inscription of Bragg gratings in microfibers,"IEEE Photonics Journal, Vol. 4, No. 1, pp. 181-186, Feb 2012.
2011
43. Yan-Nan Tan, Yang Zhang, Long Jin, Bai-ou Guan*,"Simultaneous strain and temperature fiber grating laser sensor based on radio-frequency measurement,"Optics Express, Vol.19, No. 21, pp. 20650-20656, Oct. 10, 2011.
44. Chuang Wu, Bai-ou Guan, Chao Lu, and Hwa-Yaw Tam,"Salinity sensor based on polyimide-coated photonic crystal fiber,"Optics Express, Vol. 19, No. 21, pp. 20003-20008, Oct. 10, 2011.
45. Jie Li, Li-Peng Sun, Shuai Gao, Zhan Quan, Yong-Liang Chang, Yang Ran, Long Jin, Bai-ou Guan*,"Ultrasensitive refractive index sensors based on rectangular silica microfibers,"Optics Letters, Vol. 36, No. 18, pp. 3593-3595, Sept. 15, 2011.
46. Yang Ran, Yan-Nan Tan, Li-Peng Sun, Shuai Gao, Jie Li, Long Jin, Bai-ou Guan*,"193nm excimer laser inscribed Bragg gratings in microfibers for refractive index sensing,"Optics Express, Vol. 19, No. 19, pp. 18577-18583, Sept. 12, 2011.
47. Yan-Nan Tan, Yang Zhang, and Bai-ou Guan*,"Hydrostatic pressure insensitive dual polarization fiber grating laser hydrophone,"IEEE Sensors Journal, Vol. 11, No. 5, pp. 1169-1172, May 2011.
48. Chuang Wu, Jie Li, Xinhuan Feng, Bai-ou Guan*, Hwa-Yaw Tam,"Side_hole photonic crystal fiber with ultrahigh polarimetric pressure sensitivity,"IEEE/OSA Journal of Lightwave Technology, Vol. 29, No. 7, pp. 943-948, April 1, 2011.
49. Chuang Wu, H. Y. Fu, K. K. Qureshi, Bai-ou Guan, H. Y. Tam,"High pressure and high temperature characteristics of a Fabry-Perot interferometer based on photonic crystal fiber,"Optics Letters, Vol. 36, No. 3, pp. 412-414, Feb 1, 2011.
50. Chuang Wu, Yang Zhang, and Bai-ou Guan*,"Simultaneous measurement of temperature and hydrostatic pressure using Bragg gratings in standard and grapefruit microstructured fibers,"IEEE Sensors Journal, Vol. 11, No. 2, pp. 489-492, Feb 2011.
51. Tuan Guo, Alan C. L. Wong, Wei-Sheng Liu, Bai-ou Guan, Chao Lu, and Hwa-Yaw Tam,"Beat frequency adjustable Er-doped DBR fiber laser for ultrasound detection,"Optics Express, Vol. 19, No. 3, pp. 2485-2492, 31 Jan 2011.
52. Yang Zhang, Yan-Nan Tan, Tuan Guo, and Bai-ou Guan*,"Beat frequency trimming of dual-polarization fiber grating lasers for multiplexed sensor applications,"Optics Express, Vol. 19, No. 1, pp. 218-223, 3 Jan 2011.
2010
53. Chuang Wu, Bai-ou Guan*, Zhi Wang, and Xinhuan Feng,"Characterization of pressure response of Bragg gratings in grapefruit microstructured fibers,"IEEE/OSA Journal of Lightwave Technology, Vol. 28, No. 9, pp. 1392-1397, 1 May 2010.
54. Bai-ou Guan*, Yang Zhang, and Hwa-Yaw Tam,"Compact, short lasers perform well in sensing applications,"SPIE Newsroom, 10.1117/2.1201004.002694, Apr. 27, 2010. (Invited Paper)
55. Bai-ou Guan*, and Shi-Ning Wang, "Fiber grating laser current sensor based on magnetic force,"IEEE Photonics Technology Letters, Vol. 22, No. 4, pp. 230-232, Feb 15, 2010.
56. Xinhuan Feng, Zhaohui Li, Bai-ou Guan, Chao Lu, Hwa-Yaw Tam, and PKA Wai,"Switchable UWB pulse generation using a polarization maintaining fiber Bragg grating as frequency discriminator,"Optics Express, Vol. 18, No. 4, pp. 3643-3648, Feb 15, 2010.
2009
57. Bai-ou Guan*, Yan-Nan Tan, and Hwa-Yaw Tam,"Dual polarization fiber grating laser hydrophone,"Optics Express, Vol. 17, No. 22, pp. 19544-19550, Oct. 26, 2009.
58. Xinhuan Feng, HwaYaw Tam, Chao Lu, P. K. A. Wai, and Bai-ou Guan,"Multiwavelength erbium-doped fiber laser employing cavity loss modulation,"IEEE Photonics Technology Letters, Vol. 21, No. 18, pp. 1314-1316, Sept 15, 2009.
59.Yang Zhang, Bai-ou Guan*, and Hwa-Yaw Tam,"Ultra-short distributed Bragg reflector fiber laser for sensing applications,"Optics Express, Vol. 17, No. 12, pp. 10050-10055, June 8, 2009.
60.Bai-ou Guan*, Yang Zhang, Li-Wei Zhang, and Hwa-Yaw Tam,"Electrically tunable microwave generation using compact dual-polarization fiber laser,"IEEE Photonics Technology Letters, Vol. 21, No. 11, pp. 727-729, June 1, 2009.
61. Yang Zhang, and Bai-ou Guan*,"High sensitivity distributed Bragg reflector fiber laser displacement sensor,"IEEE Photonics Technology Letters, Vol. 21, No. 5, pp. 280-282, Mar. 1, 2009.
2008及以前
62. Bai-ou Guan*, Da Chen, Yang Zhang, Hong-Jun Wang, and Hwa-Yaw Tam,"Bragg gratings in pure-silica polarization maintaining photonic crystal fiber,"IEEE Photonics Technology Letters, Vol. 20, No. 23, pp. 1980-1982, Dec 1, 2008.
63. Bai-ou Guan*, Yang Zhang, Hong-Jun Wang, Da Chen, and Hwa-Yaw Tam,"High-temperature-resistant distributed Bragg reflection fiber laser written in Er/Yb fiber,"Optics Express, Vol. 16, No. 5, pp. 2958-2964, Mar 03, 2008.
64. Long Jin, Zhi Wang, Qiang Fang, Bo Liu, Yange Liu, Guiyun Kai, Xiaoyi Dong, and Bai-ou Guan,"Bragg grating resonances in all-solid bandgap fibers,"Optics Letters, Vol. 32, No. 18, pp. 2717-2719, Sept 15, 2007.
65. Bai-ou Guan*, Hwa-Yaw Tam, Sien-Ting Lau, and Helen L. W. Chan,"Ultrasonic hydrophone based on distributed Bragg reflector fiber laser",IEEE Photonics Technology Letters, Vol.17, No.1, pp.169~171, Jan. 2005.
66. Xin-Yong Dong, NQ Ngo, P Shum, Bai-ou Guan, H.Y. Tam, X. Y. Dong,"Concentration-induced nonuniform power in tunable erbium-doped fiber,"Optics Letters, Vol. 29, No. 4, pp. 358-360, Feb 15, 2004.
67. Bai-ou Guan, Hwa-Yaw Tam, and Shun-Yee Liu,"Temperature-independent fiber Bragg grating tilt sensor",IEEE Photonics Technology Letters, Vol.16, No.1, pp.224~226, Jan. 2004.
68. Xinyong Dong, Shum P, Ngo NQ, Chan CC, Bai-ou Guan, Tam, Hwa-Yaw,"Effects of active fiber length on the tunability of erbium-doped fiber ring lasers",Optics Express, Vol. 11, No. 26, pp. 3622~3627, Dec 29 2003.
69. Bai-ou Guan, Hwa-Yaw Tam, Shun-Yee Liu, P. K. A. Wai, and N. Sugimoto,"Ultra-wideband La co-doped Bi2O3-based EDFA for L-band DWDM systems",IEEE Photonics Technology Letters, Vol. 15, No. 11, pp. 1525~1527, Sept 2003.
70. A-Ping Zhang, Xiao-Ming Tao,Weng-Hong Chung, Bai-ou Guan, and Hwa-Yaw Tam,"Cladding Mode Assisted Recoupling in Concatenated Long-Period and Fiber Bragg Gratings",Optics Letters, Vol. 27, No. 14, pp. 1214~1216, July 15, 2002.
71.Bai-ou Guan,A-Ping Zhang, Hwa-Yaw Tam,Helen L.W.Chan,Chung-Loong Choy, Xiao-Ming Tao,and Muhtesem Süleyman Demokan,"Step-Changed Long-Period Fiber Gratings",IEEE Photonics Technology Letters, Vol. 14, No. 5, pp. 657~659, May 2002.
72. A-Ping Zhang, Bai-ou Guan, Xiao-Ming Tao, and Hwa-Yaw Tam,"Mode Coupling in Superstructure Fiber Bragg Gratings",IEEE Photonics Technology Letters, Vol. 14, No. 4, pp. 489~491, Apr 2002.
73. Bai-ou Guan, Hwa-Yaw Tam, Chao Lu, and Xiao-Yi Dong,"Postfabrication Wavelength Trimming of Fiber Bragg Gratings Written in H2-loaded Fibers",IEEE Photonics Technology Letters, Vol.13, No.6, pp.591~593, Jun 2001.
74. Bai-ou Guan, Hwa-Yaw Tam, Xiao-Ming Tao, and Xiao-Yi Dong,"Highly Stable Fiber Bragg Gratings in Hydrogen-Loaded Fiber",IEEE Photonics Technology Letters, Vol.12, No.10, pp.1349~1351, Oct 2000.
75. Bai-ou Guan, Hwa-Yaw Tam, Siu-Lau Ho, Shun-Yee Liu, and Xiao-Yi Dong,"Growth of Long-Period Gratings in Hydrogen-Loaded Fiber after 193 nm UV Inscription",IEEE Photonics Technology Letters, Vol.12, No.6, pp.642~644, Jun 2000.
76. Bai-ou Guan, Hwa-Yaw Tam, Xiao-Ming Tao, and Xiao-Yi Dong,"Simultaneous Strain and Temperature Measurement Using a Superstructure Fiber Bragg Grating",IEEE Photonics Technology Letters, Vol.12, No.6, pp.675~677, Jun 2000.
77. Bai-ou Guan, Hwa-Yaw Tam, Siu-Lau Ho, Weng-Heng Chung, and Xiao-Yi Dong,"Simultaneous Strain and Temperature Measurement Using a Single Fiber Bragg Grating",Electronics Letters, Vol.36, No.12, pp.1018~1019, Jun 2000.
代表性中文論文
1 基于法拉第效應(yīng)雙偏振光纖激光磁場傳感器的縱向空間響應(yīng) 余力; 程凌浩; 陳振強(qiáng); 梁貽智; 金龍; 關(guān)柏鷗 量子電子學(xué)報(bào) 2015/7/15
2 光纖激光磁場傳感器靈敏度與拍頻頻率的關(guān)系 胡能鵬; 程凌浩; 余力; 梁貽智; 梁浩; 關(guān)柏鷗 中國激光 2015/6/10
3 微納光纖光柵器件與傳感器 關(guān)柏鷗 “廣東省光學(xué)學(xué)會(huì)2013年學(xué)術(shù)交流大會(huì)”暨“粵港臺光學(xué)界產(chǎn)學(xué)研合作交流大會(huì)”會(huì)議手冊論文集 2013/12/13
4 利用光纖光柵對實(shí)現(xiàn)雙波長增益控制摻鉺光纖放大器特性的實(shí)驗(yàn)研究 趙春柳; 關(guān)柏鷗; 董新永; 譚華耀; 袁樹忠; 董孝義 光學(xué)學(xué)報(bào) 2003/4/17
5 可調(diào)諧光纖環(huán)形腔激光器輸出特性的理論與實(shí)驗(yàn)研究 董新永; 趙春柳; 關(guān)柏鷗; 譚華耀; 袁樹忠; 開桂云; 董孝義 物理學(xué)報(bào) 2002/12/12
6 新型雙波長激光增益控制摻鉺光纖放大器 趙春柳; 關(guān)柏鷗; 董新永; 譚華耀; 袁樹忠; 董孝義 光學(xué)學(xué)報(bào) 2002/11/17
7 高斜率效率L波段寬帶可調(diào)諧光纖環(huán)形腔激光器 董新永; 關(guān)柏鷗; 文偉成; 譚華耀; 董孝義 光學(xué)學(xué)報(bào) 2002/9/17
8 分布式光纖喇曼放大技術(shù)及其在WDM系統(tǒng)中的應(yīng)用 董新永; 趙春柳; 袁樹忠; 董孝義; 關(guān)柏鷗; 譚華耀 光通信技術(shù) 2002/2/20
9 一種新穎的基于預(yù)應(yīng)變技術(shù)的光纖光柵應(yīng)變溫度傳感器 張穎; 關(guān)柏鷗; 董新永; 劉志國; 郭轉(zhuǎn)運(yùn); 開桂云; 董孝義; 蘇萬華 中國激光 2001/8/25
10 單個(gè)光纖光柵實(shí)現(xiàn)對位移和溫度的同時(shí)測量 董新永; 關(guān)柏鷗; 張穎; 開桂云; 趙啟大; 董孝義; 姚春德 中國激光 2001/7/25
11 基于預(yù)應(yīng)變的光纖光柵傳感頭應(yīng)變傳感特性的研究 張穎; 開桂云; 關(guān)柏鷗; 馮德軍; 劉志國; 董孝義 南開大學(xué)學(xué)報(bào)(自然科學(xué)版) 2001/6/30
12 單光纖光柵溫度應(yīng)變雙參數(shù)傳感研究 關(guān)柏鷗; H.Y.Tam; S.L.Ho; W.H.Chung; 董孝義 中國激光 2001/4/25
13 紫外均勻曝光對長周期光纖光柵耦合特性的影響 關(guān)柏鷗; Tam H Y; HoSL; 董孝義 光學(xué)學(xué)報(bào) 2001/2/5
14 一種高分辨率的光纖光柵傳感解調(diào)技術(shù) 關(guān)柏鷗; 余有龍; 葛春風(fēng); 劉志國; 董孝義; 譚華耀 光學(xué)學(xué)報(bào) 2000/11/5
15 光纖光柵曲率傳感的實(shí)驗(yàn)研究 董新永; 張穎; 關(guān)柏鷗; 開桂云; 關(guān)致和; 董孝義 光子學(xué)報(bào) 2000/9/25
16 用一根光纖光柵實(shí)現(xiàn)溫度與應(yīng)變的同時(shí)測量 關(guān)柏鷗; TamHY; HoSL; LiuSY; 董孝義 光學(xué)學(xué)報(bào) 2000/6/5
17 免受溫度影響的光纖光柵位移傳感器 余有龍; 譚華耀; 廖信義; 鍾永康; 關(guān)柏鷗; 董孝義 光學(xué)學(xué)報(bào) 2000/4/5
18 寬帶調(diào)諧全光纖環(huán)形激光器 關(guān)柏鷗; 郭轉(zhuǎn)運(yùn); 劉志國; 董孝義 中國激光 2000/3/25
19 光纖光柵力傳感器的無源溫漂補(bǔ)償技術(shù) 余有龍; 關(guān)柏鷗; 董孝義; 劉志國; 耿淑偉; 鄭建成 光學(xué)學(xué)報(bào) 2000/3/5
20 一種新穎的寬帶光纖光柵透射譜測量方法 董孝義; 王維導(dǎo); 劉志國; 葛春風(fēng); 關(guān)柏鷗; 余有龍; 王江 量子電子學(xué)報(bào) 2000/2/29
21 光纖光柵法布里-珀羅腔透射特性的理論研究 關(guān)柏鷗; 余有龍; 葛春風(fēng); 董孝義 光學(xué)學(xué)報(bào) 2000/1/5
22 光纖光柵調(diào)諧全光纖激光器 開桂云; 劉志國; 董孝義; 袁樹忠; 葛春風(fēng); 趙東暉; 劉云啟; 關(guān)柏鷗 光電子•激光 1999/12/30
23 高靈敏度光纖光柵溫度傳感及其測試研究 劉志國; 劉云啟; 關(guān)柏鷗; 葛春風(fēng); 郭轉(zhuǎn)運(yùn); 董孝義 南開大學(xué)學(xué)報(bào)(自然科學(xué)版) 1999/12/20
24 基于懸臂梁結(jié)構(gòu)的光纖光柵位移傳感研究 關(guān)柏鷗; 劉志國; 開桂云; 董孝義 光子學(xué)報(bào) 1999/11/25
25 利用懸臂梁將均勻周期光纖光柵變?yōu)檫惫饫w光柵 余有龍; 劉志國; 關(guān)柏鷗; 董孝義 中國激光 1999/10/25
26 一種改變光纖光柵布喇格波長的有效方法 關(guān)柏鷗; TamHY; HoSL; ManWS; 董孝義 光子學(xué)報(bào) 1999/10/25
27 光纖光柵復(fù)用溫度傳感研究 關(guān)柏鷗; 劉志國; 唐濤; 葛春風(fēng); 王江; 董孝義 光學(xué)學(xué)報(bào) 1999/9/5
28 光纖光柵溫度傳感器 關(guān)柏鷗; 劉志國; 開桂云; 葛春風(fēng); 董孝義 傳感技術(shù)學(xué)報(bào) 1999/5/15
29 高靈敏度光纖光柵傳感特性測試儀研制 劉志國; 劉云啟; 關(guān)柏鷗; 葛春風(fēng); 郭轉(zhuǎn)運(yùn); 董孝義 光子學(xué)報(bào) 1999/2/25
30 光纖光柵的溫度增敏實(shí)驗(yàn) 關(guān)柏鷗; 郭轉(zhuǎn)運(yùn); 劉志國; 董孝義; 譚華耀 光子學(xué)報(bào) 1999/1/25
31 基于溫度梯度的光纖光柵啁啾調(diào)諧 關(guān)柏鷗; 葛春風(fēng); 余有龍; 劉志國; 董孝義 光子學(xué)報(bào) 1998/10/25
32 全光纖通信系統(tǒng)中的偏振激光器 葛春風(fēng); 楊秀峰; 關(guān)柏鷗; 劉云啟; 董孝義; 馬曉紅; 于晉龍; 楊恩澤 光子學(xué)報(bào) 1998/10/25
33 半導(dǎo)體納米材料的光學(xué)性能及研究進(jìn)展 關(guān)柏鷗; 張桂蘭; 湯國慶; 韓關(guān)云 光電子•激光 1998/6/30
34 光存儲稀土材料的研究進(jìn)展 鞏雄; 張桂蘭; 關(guān)柏鷗; 陳文駒; 楊宏秀 稀土 1996/4/25
會(huì)議論文:
2013
1.Z Guo, L Cheng, J Han, BO Guan, L Jin, B Chen, XH Lin .A novel miniature fiber optic magnetic field sensor based on Ampere force and dual-polarization fiber laser Asia Pacific Optical Sensors Conference 2013, 89240N-89240N-4
2.Y Liang, Q Yuan, L Jin, L Cheng, BO Guan.Stabilizing the beat signal of the polarimetric heterodyning fiber grating laser sensor Asia Pacific Optical Sensors Conference 2013, 892436-892436-4 2013
3.X Xie, J Li, LP Sun, L Jin, B Guan.Highly sensitive current sensor utilizing CrNi-wire supported microfiber coils Asia Pacific Optical Sensors Conference 2013, 89240V-89240V-4 2013
4.X Shen, J Li, LP Sun, Y Ran, L Jin, B Guan.Temperature-independent displacement sensor based on the chirped grating in a microfiber taper Asia Pacific Optical Sensors Conference 2013, 89242V-89242V-4 2013
5.L Qi, L Jin, BO Guan.Optically heated fiber Bragg grating in active fibers for low temperature sensing application Asia Pacific Optical Sensors Conference 2013, 892404-892404-4 2013
6.B Han, H Liang, J Li, L Cheng, B Guan.Experimental characterization of Brillouin scattering in an all-solid photonic bandgap fiber for sensing application Asia Pacific Optical Sensors Conference 2013, 892414-892414-4 2013
7.M Lin, L Jin, Y Wang, BO Guan.Highly sensitive hydrostatic pressure sensor based on a selectively filled photonic crystal fiber Asia Pacific Optical Sensors Conference 2013, 89242O-89242O-4 2013
8.S Gao, L Jin, LP Sun, J Li, BO Guan.Differential FBG sensor for temperature-independent refractive index measurement Asia Pacific Optical Sensors Conference 2013, 89243H-89243H-4 2013
9.J Han, L Cheng, Z Guo, BO Guan, L Jin, B Chen, XH Lin.Sensitivity enhanced magnetic field sensor based on Farady effect and dual-polarization fiber grating laser Asia Pacific Optical Sensors Conference 2013, 89242P-89242P-4 2013
10.LP Sun, J Li, L Jin, S Gao, Z Tian, Y Ran, BO Guan.High-sensitivity temperature sensor based on highly-birefringent microfiber Asia Pacific Optical Sensors Conference 2013, 89240C-89240C-4 2013
11.Y Tan, LP Sun, L Jin, J Li, BO Guan.Long period grating-based microfiber Mach-Zehnder interferometer for sensing applications Asia Pacific Optical Sensors Conference 2013, 892435-892435-4 2013
12.Xiaodong Xie ; Jie Li ; Li-Peng Sun ; Long Jin ; Bai-ou Guan;.Highly-sensitive Current Sensor Utilizing CrNi-wire Supported Microfiber Coils; Proc. SPIE 8924, Fourth Asia Pacific Optical Sensors Conference, 89240V (October 15, 2013); 89240V. Oct 2013.
13.Xiang Shen ; Jie Li ; Li-Peng Sun ; Yang Ran ; Long Jin ; Bai-ou Guan;.Temperature-independent displacement sensor based on the chirped grating in a microfiber taper; Proc. SPIE 8924, Fourth Asia Pacific Optical Sensors Conference, 89242V (October 15, 2013); 89242V, Oct 2013.
14.Tuan Guo*, Fu Liu, Yu Liu, Nan-Kuang Chen, Bai-ou Guan, Jacques Albert,.“In vivo intracellular density detection of human acute leukemia cells with an evanescent tilted fiber grating biosensor,” Bio-sensing Technology 2013 (Sitges, Spain), May 2013.
15.Fa Du, Tuan Guo*, Fu Liu, Libin Shang, Zhaochuan Zhang, Bai-ou Guan,“Polarization-maintaining fiber-optic-grating torsion sensor,” ICAIT2013 (Taiwan), July 2013.
16.Tuan Guo*, Zhaochuan Zhang, Fu Liu, Xiaoyang Zhu, Yu Liu, Bai-ou Guan, Jacques Albert,“Orthogonal-polarimetric differential tilted fiber grating biosensor,” ICAIT 2013 (Taiwan), July 2013. (Invited talk)
17.Zhaochuan Zhang, Tuan Guo*, Fu Liu, Fa Du, Libin Shang, Baiou Guan, Jacques Albert,“Orthogonal-polarimetric differential tilted fiber Bragg grating refractometer based on microfluidic technique,” Optofluidics 2013 (Hongkong), Aug. 2013.
2012
18.Fu Liu, Tuan Guo, Xiaoyang Zhu, Libin Shang, Zhaochuan Zhang, Fa Du, Bai-ou Guan, Yu Liu and Jacques Albert,"Biological sample measurement using a 10o tilted fiber grating sensing probe," Asia Communications and Photonics Conference (ACP 2012) , Guangzhou, China, 7-10 Nov. 2012.
19.Tuan Guo, Bai-ou Guan, Yanina Y. Shevchenko, and Jacques Albert,"Optical-fiber biosensors using plasmons excited tilted fiber gratings," Proc SPIE 8351: 3nd Asia-Pacific Optical Sensors Conference 2010 (APOS2012), 8351-102, Sydney, Australia, Jan. 1- Feb. 3, 2012.
20.Yan-Nan Tan, Yang Zhang, Long Jin, and Bai-ou Guan*,"Strain and Temperature discrimination using concatenated fiber grating lasers," Proc SPIE 8351: 3nd Asia-Pacific Optical Sensors Conference 2010 (APOS2012), 8351-108, Sydney, Australia, Jan. 1- Feb. 3, 2012.
21.Yang Ran, Li-Peng Sun, Shuai Gao, Zhan Quan, Jie Li, Long Jin, and Bai-ou Guan*,"Microfiber Bragg grating inscribed using 193 nm excimer laser for refractive index sensing," Proc SPIE 8351: 3nd Asia-Pacific Optical Sensors Conference 2010 (APOS2012), 8351-115, Sydney, Australia, Jan. 1- Feb. 3, 2012.
22.Jie Li, Li-Peng Sun, Shuai Gao, Zhan Quan, Yong-Liang Chang, Yang Ran, Long Jin, and Bai-ou Guan*,"Implementation of highly-sensitive refractometers with rectangular microfibers," Proc SPIE 8351: 3nd Asia-Pacific Optical Sensors Conference 2010 (APOS2012), 8351-101, Sydney, Australia, Jan. 1- Feb. 3, 2012.
23.Yang Ran, Long Jin, Yan-Nan Tan, Li-Peng Sun, Jie Li, and Bai-ou Guan*,"Strong Bragg grating inscription in microfibers with 193 nm excimer laser," 2012 Imaging and Applied Optics Congress, JW2A.4, Mentery, California, USA, 24-28 June, 2012.
24.Bai-ou Guan, Long Jin, Hwa-Yaw Tam,"Implementation and Characterization of Polarimetric Heterodyning Fiber Grating Laser Sensors," 2012 Imaging and Applied Optics Congress, SM4F.1, Montery, California, USA, 24-28 June, 2012. (Invited Paper)
25.Xinhuan Feng, Ruichen Tao, Yuan Cao, Zhaohui Li, Jianping Li, Bai-ou Guan," Widely tunable microwave photonic filter based on phase modulation and Brillouin selective sideband amplification," 2012 17th Opto-Electronics and Communications Conference (OECC 2012), p 599-600, Busan, Korea, 2-6 July. 2012
26.Xinhuan Feng, Ruichen Tao, Yuan Cao, Zhaohui Li, Jianping Li, Bai-ou Guan,"Microwave photonic bandpass filter based on phase modulation and Hi-Bi FBG-FP cavity," 2012 17th Opto-Electronics and Communications Conference (OECC 2012), p 535-536, Busan, Korea, 2-6 July. 2012
27.Zhan Quan, Long Jin, Yong-Liang Chang, and Bai-ou Guan,"Highly sensitive hydrostatic-pressure measurement with a fiber grating laser embedded in a composite structure," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-96, Beijing, China, 17-20 Oct. 2012.
28.Lipeng Sun, Jie Li, Yanzhen Tan, Xiang Shen, Xiaodong Xie, Shuai Gao, Bai-ou Guan,"Highly-sensitive temperature-independent refractive index sensor based on compact highly-birefringent microfiber loop," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-424, Beijing, China, 17-20 Oct. 2012
29.Shuai Gao, Long Jin, Yang Ran, Li-Peng Sun, Bai-ou Guan,"Temperature compensated microfiber Bragg gratings," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-386, Beijing, China, 17-20 Oct. 2012
30.Mengping Li, Long Jin, Bai-ou Guan,"Wavelength/frequency-division multiplexing of heterodyning fiber grating laser sensors with the assistance of CO2-laser treatment," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-338, Beijing, China, 17-20 Oct. 2012
31.Yang Ran, Long Jin, Li-Peng Sun, Jie Li, Bai-ou Guan,"Temperature-independent refractive index sensor based on a Bragg grating in highly birefringent microfiber," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-279, Beijing, China, 17-20 Oct. 2012
32.Yongliang Chang, Hao Liang, Jie Li, Linghao Cheng, and Bai-ou Guan, "Brillouin scattering of a photonic crystal fiber core-offset spliced to a single mode fiber,"Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-457, Beijing, China, 17-20 Oct. 2012
33.Tuan Guo, Yang Ran, Yannan Tan, Shuai Gao, Lipeng Sun, Bai-ou Guan, Jacques Albert,"Two-dimensional fiber-optic vector vibroscope using only one multi-mode tilted fiber grating," Proc. SPIE 8421, 22nd International Conference on Optical Fiber Sensors (OFS22), 8421-224, Beijing, China, 17-20 Oct. 2012
34.Tuan Guo, Fu Liu, Xiaoyang Zhu, Yu Liu, Bai-ou Guan, and Jacques Albert,"Large tilted fiber grating biological sensing probe for intracellular density measurement," 2nd International Conference on Optofluidics (Optofluidics 2012), Suzhou, China, 13-14 Sept. 2012.
35.Libin Shang, Tuan Guo, Fu Liu, Fa Du, Zhaochuan Zhang, Bai-ou Guan, Hwa-Yaw Tam and Jacques Albert,"Power-referenced and self-calibrated PM-FBG vibroscope," Asia Communications and Photonics Conference (ACP 2012), AS1E.4, Guangzhou, China, 7-10 Nov. 2012.
2011
36.Tuan Guo, Bai-ou Guan, Hwayaw Tam, Jacques Albert,"New Developments in Tilted Fiber Bragg Gratings for Structural and Biochemical Sensing,” International Conference on Optical Instrumentation and Technology (OIT 2011), 8201-74,Beijing, China , 6-9 Nov. 2011.(invited)
37.Xinhuan Feng, Jie Li, Yi Dong, Zhaohui Li, Linghao Cheng, and Bai-ou Guan,"WDM-PON using Fabry-Pérot laser diodes injection locked by multiwavelength erbium-doped fiber laser," 16th Opto-Electronics and Communications Conference (OECC 2011), p 523-524, Kaohsiung, Taiwan, 4-8 July 2011
38.Tuan Guo, Bai-ou Guan, Chao Lu and Hwa-Yaw Tam,"Ultrasound detection using a tunable & low beat-frequency DBR fiber laser," 16th Opto-Electronics and Communications Conference (OECC 2011) p 194-195, Kaohsiung, Taiwan, 4-8 July 2011
39.Tuan Guo, Yu-Heng Huang, Bai-ou Guan, Chao Lu, Hwa-Yaw Tam and Jacques Albert,"VCSEL-based tilted fiber grating vibration sensing system," 2011 Conference on Lasers and Electro-Optics: Laser Science to Photonic Applications (OECC 2011), 5950481, Baltimore, MD, United states, 1-6 May, 2011
40.Chuang Wu, Jie Li, Xinhuan Feng, Bai-ou Guan, and Hwa-Yaw Tam,"Side-hole polarization-maintaining photonic crystal fiber for hydrostatic pressure sensing," Proc SPIE Int Soc Opt Eng, v 7753, 21st International Conference on Optical Fiber Sensors (OFS 21), 77533R, Ottawa, ON, Canada, 15-19 May 2011.
41.Yang Zhang, Yan-Nan Tan, Tuan Guo and Bai-ou Guan,"RF-frequency-division multiplexing of polarimetric fiber grating laser sensors," Proc SPIE Int Soc Opt Eng, v 7753, 21st International Conference on Optical Fiber Sensors (OFS 21), 77537O, Ottawa, ON, Canada, 15-19 May 2011.
42.Bai-ou Guan, Yang Zhang ,Yan-Nan Tan, Tuan Guo, Hwa-Yaw Tam,"Polarimetric heterodyning fiber grating laser sensors," Proc SPIE Int Soc Opt Eng, v 8034, Conference on Photonic Microdevices/ Microstructures for Sensing III, 80340G, Orilando, USA, Apr 27-28,2011.(invited)
43.Tuan Guo, Bai-ou Guan, and Jacques Albert,"Optofluidic biomolecular sensors based on plasmon excited nano-tapered tilted fiber gratings," 1st International Conference on Optofluidics, Xi’an, T07-003, 11-13 Dec. 2011.
2010
44.Bai-ou Guan, Xian-Sheng Sun, Yan-Nan Tan,"Dual Polarization fiber grating laser accelerometer," Proc SPIE, vol 7653 4th European Workshop on Optical Fibre Sensors (EWOFS’2010), 76530Z , Porto, Portugal, Sep 8-10, 2010.
45.Xinhuan Feng, P. K. A. Wai, H. Y. Tam, C. Lu, Bai-ou Guan,"Multiwavelength Erbium-Doped Fiber Laser Using Two Comb Filters," International Conference on Optical Communications and Networks (OECC2010),pp 642-643, Sapporo, Japan, Jul 5-9, 2010.
46.Yang Zhang, Yan-Nan Tan, Bai-ou Guan, Xinhuan Feng, and Hwa-Yaw Tam,"Ultra-short distributed Bragg reflector fiber laser in erbium (Er3+) doped fiber," Asia-Pacific Optical Sensors Conference 2010 (APOS2010), TU4, Guangzhou, China, Jun 28-30, 2010.
47.Yan-Nan Tan, Bai-ou Guan, and Hwa-Yaw Tam,"Fiber optic hydrophone based on dual polarization distributed Bragg reflector fiber laser," Asia-Pacific Optical Sensors Conference 2010 (APOS2010), TU9, Guangzhou, China, Jun 28-30, 2010.
48.Chuang Wu, Bai-ou Guan, Zhi Wang, and Xinhuan Feng,"Bragg grating in grapefruit microstructured fiber for hydrostatic pressure sensing," Asia-Pacific Optical Sensors Conference 2010 (APOS2010), TU18, Guangzhou, China, Jun 28-30, 2010.
49.Shi-Ning Wang, Yan-Nan Tan, and Bai-ou Guan,"A Fiber Grating Laser Current Sensor Based on Magnetostrictive Stress," Asia-Pacific Optical Sensors Conference 2010 (APOS2010), TP41, Guangzhou, China, Jun 28-30, 2010.
50.Xinhuan Feng, Zhaohui Li, Bai-ou Guan, C. Lu, H. Y. Tam, P. K. A. Wai,"UWB pulse generator with switchable polarity using PM-FBG," Asia-Pacific Microwave Photonics Conference 2010 (APMP2010), TA2-1, Hong Kong, Apr 26-28, 2010.
51.Tuan Guo, Yuheng Huang, Bai-ou Guan, Chao Lu, and Hwa-Yaw Tam,"Fiber-optic vibration sensing system based on a VCSEL-powered and lateral-offset tilted fiber grating," Asia Communications and Photonics Conference and Exhibition (ACP2010), p 92-93, Shanghai, China, 8-12 Dec. 2010.
2009
52.Bai-ou Guan, Yang Zhang, HJ Wang, Da Chen,Tam HY,"High temperature resistant fiber Bragg grating lasers for sensing applications," Proc SPIE: 7503, 20th International Conference on Optical Fibre Sensors (OFS20), 75037H, Edinburgh, United kingdom, 5-9 Oct. 2009
53.Yang Zhang, Bai-ou Guan,Tam HT,"Ultra-short distributed Bragg reflector fiber lasers for sensing applications," Proc SPIE: 7503, 20th International Conference on Optical Fibre Sensors (OFS20), 75032K, Edinburgh, United kingdom, 5-9 Oct. 2009.
54.Bai-ou Guan, SN Wang," Fiber grating laser current sensor based on magnetic force," Proc SPIE: 7503, 20th International Conference on Optical Fibre Sensors (OFS20), 75033V, Edinburgh, United kingdom, 5-9 Oct. 2009
55.Yang Zhang, Bai-ou Guan,"Dual-polarization fiber grating laser displacement sensor,"Proc SPIE: 7503, 20th International Conference on Optical Fibre Sensors (OFS20), 75033Z, Edinburgh, United kingdom, 5-9 Oct. 2009
榮譽(yù)獎(jiǎng)勵(lì):
1. 2006年,入選教育部“新世紀(jì)優(yōu)秀人才”。
2. 2007年,入選遼寧省“百千萬人才工程”百層次人才。
3. 2008年,榮獲第三屆大連市青年科技獎(jiǎng)。
4. 2010年,入選廣東省高校“千百十工程”國家級培養(yǎng)對象。
5. 2012年,榮獲國家杰出青年科學(xué)基金。
6. 2013年,入選科技部中青年科技創(chuàng)新領(lǐng)軍人才。
7. 2014年,入選廣東省特支計(jì)劃科技創(chuàng)新領(lǐng)軍人才。
8. 其團(tuán)隊(duì)被評為廣東省“千百十工程”先進(jìn)團(tuán)隊(duì),榮獲廣東青年五四獎(jiǎng)?wù)录w獎(jiǎng)。
學(xué)術(shù)交流:
在國際學(xué)術(shù)會(huì)議上做特邀報(bào)告10余次,擔(dān)任國際學(xué)術(shù)會(huì)議的主席或共同主席3次,擔(dān)任國際學(xué)術(shù)會(huì)議國際指導(dǎo)委員會(huì)或程序委員會(huì)的成員20余次。
1.關(guān)柏鷗;李朝輝;李朝輝;李杰,出席在新加坡召開的Photonics Global 2012國際會(huì)議,關(guān)柏鷗做特邀報(bào)告,并擔(dān)任分會(huì)場主持,2012年12月。
2.關(guān)柏鷗,出席在美國加州蒙特雷召開的美國光學(xué)學(xué)會(huì)光學(xué)傳感器主題會(huì)議,做了一個(gè)特邀報(bào)告和一個(gè)口頭報(bào)告,并擔(dān)任分會(huì)場主持,2012年6月。
3.關(guān)柏鷗;郭團(tuán);冉洋,出席在悉尼召開的第三屆亞太光學(xué)傳感器會(huì)議,關(guān)柏鷗、郭團(tuán)和冉洋分別做口頭報(bào)告,關(guān)柏鷗擔(dān)任會(huì)議主持,順訪了悉尼大學(xué)、斯威本科技大學(xué),2012年1月。
4.關(guān)柏鷗,訪問日本東京大學(xué)工學(xué)部電氣電子系,做學(xué)術(shù)報(bào)告,進(jìn)行學(xué)術(shù)交流與合作,訪問日本東京大學(xué)工學(xué)部電氣電子系,做學(xué)術(shù)報(bào)告,進(jìn)行學(xué)術(shù)交流與合作。
5.關(guān)柏鷗;李朝暉,出席信息光子學(xué)與光通信國際會(huì)議(IPOC2010),關(guān)柏鷗和李朝暉分別做特邀報(bào)告,順訪了新加坡南洋理工大學(xué)、新加坡國立大學(xué)、新加坡信息技術(shù)研究所(I2R),2011年10月。
6.關(guān)柏鷗;郭團(tuán);金龍,出席在渥太華召開的第21屆國際光纖傳感器會(huì)議,訪問了渥太華大學(xué)、卡爾頓大學(xué)、魁北克大學(xué)、加拿大國家研究委員會(huì)微結(jié)構(gòu)科學(xué)研究所,2011年5月。
7.關(guān)柏鷗,出席在佛羅里達(dá)州奧蘭多召開的SPIE Defense, Security, and Sensing 2011 會(huì)議,做特邀報(bào)告,并擔(dān)任分會(huì)場主持,訪問了美國密蘇里科技大學(xué)、斯蒂文斯理工學(xué)院、弗吉尼亞理工大學(xué)、密歇根大學(xué),2011年4月。
8.關(guān)柏鷗,出席在葡萄牙波爾圖召開的第四屆歐洲光纖傳感器會(huì)議,2010年9月。
9.關(guān)柏鷗;馮新煥;李朝暉;程凌浩,出席在香港召開的第五屆亞太微波光子學(xué)會(huì)議,馮新煥、李朝暉、程凌浩分別做口頭報(bào)告,關(guān)柏鷗、馮新煥分別擔(dān)任分會(huì)場主持,2010年4月。
10.關(guān)柏鷗,出席在愛丁堡召開的第20屆國際光纖傳感器會(huì)議,做口頭報(bào)告,訪問了Aston大學(xué)、南安普頓大學(xué)、倫敦城市大學(xué),2009年10月。
筑夢光纖世界
——記暨南大學(xué)光子技術(shù)研究所團(tuán)隊(duì)
在中國的南海之濱,坐落著“華僑最高學(xué)府”——暨南大學(xué)。百年來,秉持著“忠信篤敬”的校訓(xùn),暨南大學(xué)人才輩出。
六年前,關(guān)柏鷗來到暨南大學(xué),親手創(chuàng)建光子技術(shù)研究所;六年后,這支團(tuán)隊(duì)已深深扎根于此,為我國光纖光子學(xué)及應(yīng)用技術(shù)書寫下光輝的篇章。
身為團(tuán)隊(duì)帶頭人的關(guān)柏鷗認(rèn)為:“我們的最大優(yōu)勢就是團(tuán)結(jié),不同背景和專長的年輕人在一起組成團(tuán)隊(duì),相互取長補(bǔ)短,彼此信任,密切合作。”
一步一腳印創(chuàng)未來
2009年,關(guān)柏鷗來到暨南大學(xué)。那是一個(gè)春暖花開的季節(jié),主教學(xué)樓前正盛開著紅色的木棉花,迎著陽春自樹頂端向下蔓延。“暨大校園不大,但很漂亮、很整潔,工作生活很便利,出行尤其方便。”這是關(guān)柏鷗初到暨大時(shí)的印象。當(dāng)時(shí),關(guān)柏鷗受邀來暨大參加一個(gè)人才工作會(huì)議,他了解到學(xué)校為高層次人才提供一站式服務(wù),十分重視人才工作。正是學(xué)校的這些政策和措施,讓關(guān)柏鷗最終選擇在暨大創(chuàng)建光子技術(shù)研究所(以下簡稱“光子所”)。
光子所剛成立時(shí),除關(guān)柏鷗外,團(tuán)隊(duì)雖只有4個(gè)人,但他們都非常優(yōu)秀。4人都申報(bào)了國家自然科學(xué)基金項(xiàng)目并全部獲批,資助成功率達(dá)100%,遠(yuǎn)超當(dāng)時(shí)僅有20%的全國平均水平。“一個(gè)團(tuán)隊(duì),人才是根本,而想要每人都發(fā)揮最大作用,最重要的是形成合力,而不是各自為戰(zhàn)”,關(guān)柏鷗總結(jié)道,比如申請國家重大課題或項(xiàng)目,該所從選題、選擇申報(bào)學(xué)科領(lǐng)域到人員搭配組合,團(tuán)隊(duì)內(nèi)部都進(jìn)行了統(tǒng)籌協(xié)調(diào),特別是在申請書撰寫上,團(tuán)隊(duì)成員發(fā)揮傳幫帶作用,為新成員具體指導(dǎo)和反復(fù)修改,這就確保了申請書的質(zhì)量。
雖然名字叫研究所,但在行政上與學(xué)院是平級的。光子所是學(xué)校的直屬科研機(jī)構(gòu),是暨南大學(xué)的學(xué)術(shù)特區(qū)。成立之初,關(guān)柏鷗為該所確定了兩個(gè)發(fā)展方向:一方面,瞄準(zhǔn)世界科技前沿,從事前瞻性和原創(chuàng)性課題研究,爭創(chuàng)國際水平的學(xué)術(shù)成果;另一方面,進(jìn)行應(yīng)用技術(shù)攻關(guān),開展產(chǎn)學(xué)研合作,為國民經(jīng)濟(jì)建設(shè)和社會(huì)發(fā)展服務(wù)。
光子所的成立,彌補(bǔ)了暨大理工科發(fā)展相對薄弱的劣勢,大大加強(qiáng)了學(xué)校光電信息學(xué)科的科研實(shí)力。如今,擁有18個(gè)固定人員的光子所不僅是人員規(guī)模的壯大,在人才項(xiàng)目上也取得了豐碩成果,多位教師入選國家或省部級人才計(jì)劃,包括國家杰出青年科學(xué)基金、國家創(chuàng)新人才推進(jìn)計(jì)劃、中組部青年千人、教育部新世紀(jì)優(yōu)秀人才等。關(guān)柏鷗告訴記者,光子所的科研條件也得到很大的提升,所內(nèi)具備光纖器件制備、高速光纖傳輸、微波光子學(xué)、光纖傳感技術(shù)方面的先進(jìn)儀器設(shè)備和研究平臺,并與香港理工大學(xué)成立了光纖光子學(xué)聯(lián)合實(shí)驗(yàn)室,雙方資源共享,緊密合作,共同開展前沿課題研究,聯(lián)合培養(yǎng)研究生。
優(yōu)秀的教師團(tuán)隊(duì)、尖端的科研儀器、濃厚的學(xué)術(shù)氛圍……光子所成立以來共主持承擔(dān)科研項(xiàng)目87項(xiàng),獲得總經(jīng)費(fèi)4800余萬元。其中國家級項(xiàng)目24項(xiàng),目前在研的國家自然科學(xué)基金重點(diǎn)項(xiàng)目有2項(xiàng)。共發(fā)表SCI收錄論文145篇,其中光學(xué)領(lǐng)域權(quán)威期刊Optics Express和Optics Letters上70篇,研究成果被Nature Photonics、Laser Focus World和Advanced in Engineering亮點(diǎn)報(bào)道。其團(tuán)隊(duì)被評為廣東省“千百十工程”先進(jìn)團(tuán)隊(duì),榮獲廣東青年五四獎(jiǎng)?wù)录w獎(jiǎng)。
談及未來,關(guān)柏鷗希望研究所進(jìn)一步擴(kuò)大人員規(guī)模和提升科研實(shí)力,既能頂天又能立地,在基礎(chǔ)研究方面能夠與世界同步,在應(yīng)用技術(shù)研發(fā)方面能夠與行業(yè)產(chǎn)業(yè)對接,為經(jīng)濟(jì)社會(huì)發(fā)展服務(wù)。特別是希望借著廣東省啟動(dòng)高水平大學(xué)建設(shè)計(jì)劃的難得機(jī)遇,盡快將光子所做大做強(qiáng)。
小光纖,大世界
光纖,一種神奇的材料,它的發(fā)明大大地改變了人類的生活。華人科學(xué)家高錕因在“光纖傳送信息”方面的重大突破性成就,榮獲2009年度諾貝爾物理學(xué)獎(jiǎng)。一條條細(xì)如發(fā)絲的光纖,令信息能夠越洋傳千里,為人類連通了信息時(shí)代。關(guān)柏鷗介紹,信息社會(huì)有三個(gè)支柱技術(shù),分別是傳感器技術(shù)、通信技術(shù)、計(jì)算機(jī)技術(shù)。在前兩個(gè)支柱技術(shù)中,“光纖”都扮演著重要角色。
目前,光子所的研究工作主要圍繞“光纖”展開,致力于光纖技術(shù)在信息獲取和信息傳輸方面的應(yīng)用研究,重點(diǎn)開展先進(jìn)光纖光子器件、光纖傳感術(shù)、高速光纖通信和微波光子學(xué)技術(shù)方面的基礎(chǔ)和應(yīng)用研究。
關(guān)柏鷗告訴記者:“也許這些專業(yè)術(shù)語很難理解,但它們離我們的生活并不遙遠(yuǎn)。”在廣州的地標(biāo)性建筑“廣州塔”上,安裝了數(shù)百個(gè)光纖傳感器,對其隨時(shí)進(jìn)行檢測。其中一種核心器件——光纖傾角傳感器,就是出自關(guān)柏鷗的設(shè)計(jì)。關(guān)柏鷗解釋道,作為一種新興的傳感器技術(shù),光纖傳感器具有傳統(tǒng)電學(xué)傳感器所不具備的優(yōu)勢。“比如說,我們希望獲取油田井下的一些重要信息,由于高溫高壓等惡劣環(huán)境,傳統(tǒng)電學(xué)傳感器無法在油田井下工作,光纖傳感器卻可以長期穩(wěn)定工作。”光纖傳感器還能夠以近乎無創(chuàng)的方式植入體內(nèi),獲取人體內(nèi)部病灶的關(guān)鍵信息,為疾病早期診斷提供依據(jù)。在國家杰出青年科學(xué)基金資助下,目前光子所團(tuán)隊(duì)正在開展光纖傳感器用于心血管病和癌癥等重大疾病的早期診斷方面的研究。
在光纖通信技術(shù)領(lǐng)域,光子所團(tuán)隊(duì)主要研究如何以更低的成本實(shí)現(xiàn)更大的帶寬,傳輸更多的信息。從2011年至今,光子所承擔(dān)了多項(xiàng)華為技術(shù)有限公司的前沿技術(shù)攻關(guān)項(xiàng)目,聯(lián)合開展高速光通信系統(tǒng)方面研究,在下一代光調(diào)制技術(shù)、先進(jìn)光與數(shù)字信號處理技術(shù)領(lǐng)域取得了多項(xiàng)研究成果,共同申請了多項(xiàng)國際專利。2015年1月,光子所團(tuán)隊(duì)開始了國家自然科學(xué)基金重點(diǎn)項(xiàng)目“新一代光網(wǎng)絡(luò)性能監(jiān)測中的調(diào)制碼型及多參數(shù)分析研究”。項(xiàng)目負(fù)責(zé)人李朝暉介紹,隨著互聯(lián)網(wǎng)業(yè)務(wù)的發(fā)展,光網(wǎng)絡(luò)將從靜態(tài)向動(dòng)態(tài)光網(wǎng)絡(luò)方向演化,要求下一代動(dòng)態(tài)光網(wǎng)絡(luò)具備感知自身光信號的物理性能的能力。“通過本項(xiàng)目研究,能夠?yàn)橄乱淮鷦?dòng)態(tài)光網(wǎng)絡(luò)儲備前期理論和技術(shù)基礎(chǔ)。”
光子所的另一個(gè)研究方向是微波光子技術(shù),該技術(shù)就像一座“橋梁”,一頭連著電的世界,一頭連著光的世界,它充分結(jié)合了“光”和“電”二者的優(yōu)勢。微波光子技術(shù)將會(huì)對未來的雷達(dá)技術(shù)產(chǎn)生革命性的影響,“它可以成為最堅(jiān)固的盾,識別敵方的隱形飛機(jī);也可以成為最鋒利的矛,幫助導(dǎo)彈精確地攻擊敵方目標(biāo),對我國國防工業(yè)具有重要意義。”王旭東如是說。王旭東在澳大利亞悉尼大學(xué)獲得博士學(xué)位后加入光子所,多年從事微波光子技術(shù)領(lǐng)域研究。
伴隨著互聯(lián)網(wǎng)、物聯(lián)網(wǎng)及移動(dòng)網(wǎng)絡(luò)的發(fā)展,“大數(shù)據(jù)”儼然成為當(dāng)下耳熟能詳?shù)母哳l詞匯,并滲透在生活的方方面面。據(jù)美國IDC公司預(yù)測,全球數(shù)據(jù)正以每兩年翻一番的速度高速增長。利用綠色節(jié)能的光存儲技術(shù)替代現(xiàn)有的電磁數(shù)據(jù)存儲方式,已成為引領(lǐng)以數(shù)據(jù)和智能存儲為核心的工業(yè)革命4.0的核心技術(shù)。2015年,光子所通過青年千人計(jì)劃引進(jìn)了澳大利亞斯威本科技大學(xué)的李向平團(tuán)隊(duì)。結(jié)合光子所在光纖傳感與通訊技術(shù)方面的積累,李向平團(tuán)隊(duì)將致力于超大容量和超低能耗的光存儲技術(shù)的研究。目前該團(tuán)隊(duì)一直是光存儲容量世界記錄的保持者,將光存儲技術(shù)的容量提高了40000倍以上。
人才強(qiáng)所,合力至上
在光子所,1972年出生的關(guān)柏鷗是年齡最大的。這是一個(gè)非常年輕的團(tuán)隊(duì),光子所教師平均年齡不到34歲,絕大部分老師都具有海外留學(xué)或工作經(jīng)歷。“年輕,有著良好的教育背景,具有國際化視野”,這是關(guān)柏鷗對自己團(tuán)隊(duì)的評價(jià)。“更重要的一點(diǎn),我們是團(tuán)隊(duì)作戰(zhàn),我們研究所有一個(gè)非常好的氛圍,老師之間非常團(tuán)結(jié),大家彼此信任,精誠合作,能夠形成合力。”
光子所成立伊始,關(guān)柏鷗就在努力營造和諧、愉快的工作學(xué)習(xí)氛圍。“一個(gè)好的單位氛圍,能夠?yàn)槊恳晃怀蓡T注入正能量,讓每一位成員向外傳遞正能量。”在光子所,無論老師還是學(xué)生,都能主動(dòng)為研究所著想,積極地為研究所發(fā)展貢獻(xiàn)力量。他認(rèn)為,身為團(tuán)隊(duì)帶頭人,首先要能夠根據(jù)學(xué)科前沿和現(xiàn)實(shí)需求,凝練團(tuán)隊(duì)研究方向,使整個(gè)團(tuán)隊(duì)形成合力,有共同目標(biāo);其次,要努力營造和諧、合作、奮發(fā)向上的團(tuán)隊(duì)氛圍,讓大家愉快、舒心地工作。
光子所的團(tuán)隊(duì)氛圍,為青年教師成長提供了良好的條件保障。關(guān)柏鷗說:“年輕人想做實(shí)事,研究所正好能為他們提供上升空間,同時(shí)年輕力量的注入也給研究所創(chuàng)造了活躍的氛圍。所里每一位成員都能開心地工作,有事就民主討論。”
五年前,27歲的金龍加入光子所任教。如今,他已是光子所的研究員、研究生導(dǎo)師,他對記者說,“在所里,通常是所長負(fù)責(zé)總體把握團(tuán)隊(duì)方向,團(tuán)隊(duì)成員之間既相互合作又有不同分工,不同做事風(fēng)格的成員可以扮演不同的角色、承擔(dān)不同的事情,這樣一來就能起到團(tuán)隊(duì)順暢運(yùn)作的效果”。目前,金龍已主持承擔(dān)了兩項(xiàng)國家自然科學(xué)基金項(xiàng)目,先后入選了廣州市珠江科技新星、廣東省高校優(yōu)秀青年教師培養(yǎng)計(jì)劃和“廣東特支計(jì)劃”科技創(chuàng)新青年拔尖人才。
同一批加入光子所的還有郭團(tuán),他于2014年晉升為研究員。在光子所近五年的時(shí)間里,郭團(tuán)共主持國家及省部級科研項(xiàng)目6項(xiàng),申請或授權(quán)國家發(fā)明專利9項(xiàng),他認(rèn)為,“光子所的思想極其開放,有著自由的學(xué)術(shù)氛圍。無論老師還是學(xué)生,大家相互討論、互相學(xué)習(xí)、共同提高,能夠形成凝聚力”。2011年,郭團(tuán)入選廣州市首批“珠江科技新星”;兩年后,他入選暨南大學(xué)“杰出青年學(xué)者”;今年,他又入選首批“廣東特支計(jì)劃”科技創(chuàng)新青年拔尖人才。
關(guān)柏鷗認(rèn)為,光子所團(tuán)隊(duì)有兩個(gè)最大的特點(diǎn),一個(gè)是“年輕”,一個(gè)是“團(tuán)結(jié)”。身為團(tuán)隊(duì)帶頭人,他善于挖掘每一位成員的優(yōu)點(diǎn)和長處,幫助他們規(guī)劃未來發(fā)展方向,為年輕人發(fā)展搭建臺階,提升空間。“這樣,每一位團(tuán)隊(duì)成員就會(huì)有歸屬感、有干勁,年輕人能夠快速成長,整個(gè)團(tuán)隊(duì)就會(huì)迸發(fā)活力、有戰(zhàn)斗力。”
育人為本,貴在用心
管子曾說:十年之計(jì),莫如樹木,百年之計(jì),莫如樹人。國家、民族、家庭只有做好人的培育,人類才能永續(xù)繁衍、生生不息。
秉持教書育人的理念,光子所把人才培養(yǎng)放在首位。目前,光子所在讀博士研究生有12人,碩士研究生60人。關(guān)柏鷗說:“我們主要為學(xué)生提供前沿的課題和方向,并給予具體的指導(dǎo),最主要的是我們激發(fā)學(xué)生的研究興趣,有了興趣,學(xué)生們就能夠做出很多好的成果”。
在學(xué)生王皓眼里,光子所是一個(gè)充滿活力,不斷發(fā)展的年輕團(tuán)隊(duì),“我的老師和師兄師姐們給了我很大的幫助,他們會(huì)將一些新的想法和新的思路與我們分享”。光子所經(jīng)常會(huì)派學(xué)生參加一些大型的國際會(huì)議,這對王皓來說,既長知識又長見識,能夠體驗(yàn)一番國外的風(fēng)土人情。“光子所每周都會(huì)組織羽毛球、籃球、乒乓球等體育活動(dòng),節(jié)假日我們還會(huì)一起聚餐、出游、踏青。”即將面臨畢業(yè),王皓心情變得復(fù)雜起來,她舍不得這個(gè)給過她無限關(guān)懷的光子所。
畢業(yè)后到深圳華為公司工作的林偉,時(shí)常想念在光子所的學(xué)習(xí)時(shí)光,“這里的老師雖然都很年輕,但是他們有著非常深厚的科研功底。同學(xué)們也相處得非常融洽,就像家人一樣。”林偉說,光子所是一個(gè)很適合學(xué)習(xí)和深造的地方,它有多個(gè)科研方向可以選擇,而且各個(gè)方向都有著豐厚的成果,每年都能發(fā)表大量的高水平文章,所里面的硬件條件也是國內(nèi)很多大學(xué)難以比及的。
六年來,心懷夢想的學(xué)子陸續(xù)來到光子所,他們收獲知識,獲得發(fā)展,在國際舞臺上初露鋒芒。據(jù)關(guān)柏鷗介紹,光子所的研究生多次榮獲國際學(xué)術(shù)獎(jiǎng)勵(lì),包括第22屆國際光纖傳感器會(huì)議OFS22最佳學(xué)生論文獎(jiǎng)、第五屆歐洲光纖傳感器會(huì)議(EWOFS2013)最佳論文獎(jiǎng)、第四屆國際光學(xué)儀器與技術(shù)會(huì)議(OIT2013)最佳學(xué)生論文獎(jiǎng)、2014年亞太通信及光子學(xué)會(huì)議(ACP2014)最佳學(xué)生論文獎(jiǎng)等。“其中,有的獎(jiǎng)項(xiàng)是中國學(xué)生首次獲得,這標(biāo)志著我們學(xué)生的水平得到了國際上的認(rèn)可。”
學(xué)生的成長與進(jìn)步對關(guān)柏鷗來說是最大的欣慰,他總結(jié)道,“最重要的是,老師們要能夠換位思考,鼓勵(lì)和引導(dǎo)學(xué)生,充分信任他們,放手讓他們?nèi)プ?rdquo;。據(jù)記者了解,光子所師生關(guān)系非常融洽,同學(xué)之間也十分團(tuán)結(jié),學(xué)生們能夠自覺地為研究所發(fā)展著想,光子所的一些公共事務(wù),都由學(xué)生們承擔(dān)著。關(guān)柏鷗說:“這是一個(gè)相互的過程,老師真正用心對待學(xué)生,學(xué)生都能體會(huì)到。”
來源:科學(xué)中國人 2015年第6期
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