金龙,男,1983年出生,暨南大学光子技术研究所研究员,硕士生导师。
人物简介
2003年毕业于南开大学物理学院,获学士学位,2008年毕业于南开大学现代光学研究所,获博士学位。2008年赴香港理工大学电机工程学系从事博士后研究。2010年起在暨南大学光子技术研究所任教,历任副教授、研究员。
主要从事光纤光子器件和光纤传感技术方面的研究,目前主持国家自然科学基金项目2项、参与国家自然科学基金重点项目1项(第二)、以核心成员身份参与广东省自然科学基金团队项目1项。发表SCI论文60余篇,SCI他引400余次。研究成果曾被美国光学工程学会SPIE Newsroom报道,受邀在IEEE Journal of Lightwave Technology, Optical Fiber Technology等国外期刊上撰写综述文章。
2013年入选广东省高等学校优秀青年教师培养计划,2013年获评广州市珠江科技新星。
科研项目:
1.国家自然科学基金面上项目:基于前向谐振耦合的螺旋式光微流传感器机理与实现研究
批准号:11374129,88万,2014-2017,项目负责人。
2.国家自然科学基金青年基金项目:基于高度选择性填充的光子晶体光纤光栅压强传感器研究
批准号:11104117,28万,2012-2014,项目负责人。
3.国家自然科学基金重点项目:双频干涉型光纤激光声矢量传感器基础问题和关键技术研究
批准号:61235005,2013-2017,第二参与人。
4.广东省自然科学基金团队项目:面向电力监测光纤传感网络关键技术研究
批准号:S2013030013302,2013-2017,核心成员。
5.广东省高等学校优秀青年教师培养计划项目:新型高灵敏度宽带光纤激光声传感器研究
批准号:Yq2013021,50万,2014-2016,项目负责人。
6.广州市珠江科技新星专项项目:面向生物医药检测的螺旋式光微流传感器研究,
30万,2014-2016,项目负责人。
7.暨南大学科研培育与创新基金(面上项目):光纤激光拍频型低频声传感器研究
批准号:21612433,10万,项目负责人。
期刊论文:
1.Long Jin, Yizhi Liang, Meng-Ping Li, Linghao Cheng, and Bai-Ou Guan,
"A 16-element multiplexed heterodyning fiber grating laser sensor array”,
submitted to IEEE JLT
2.Lin Qi, Long Jin, Yizhi Liang, Linghao Cheng and Bai-Ou Guan,
“Efficiency enhancement of optical tuning for Bragg gratings in rare-earth doped fibers,”
IEEE Photonics Technology Letters, to be published.
3.Xiuxin Wang, Long Jin, Jie Li, Yang Ran, and Bai-Ou Guan,
“Microfiber interferometric acoustic transducers,”
Optics Express, vol. 22, no. 7, 8126-8135, 2014.
4.Yizhi Liang, Qiang Yuan, Long Jin, Linghao Cheng, and Bai-Ou Guan,
“Effect of pump light polarization and beat note stabilization for dual-polarization fiber grating laser sensors,”
IEEE Journal of Selected Topics in Quantum Electronics, vol. 20, no. 5, Art. No. 5600208, 2014.
5.Lipeng Sun, Jie Li, Yanzhen Tan, Shuai Gao, Long Jin, and 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. 26714-26720, 2013.
6.Bai-Ou Guan, Jie Li, Long Jin, Yang Ran,
“Fiber Bragg gratings in optical microfibers,”
Journal of Lightwave Technology, vol. 19, no. 6, pp. 793-801, 2013. (Invited paper)
7.Linghao Cheng, Jianlei Han, Long Jin, Zhenzhen Guo, and Bai-Ou Guan,
“Sensitivity enhancement of Faraday effect based heterodyning fiber laser magnetic field sensor by lowering linear birefringence,”
Optics Express, vol. 21, no. 25, pp. 30156-30162, 2013.
8.Yanzhen Tan, Lipeng Sun, Long Jin, Jie Li, and 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, 2013.
9.Linghao Cheng, Jianlei Han, Zhenzhen Guo, Long Jin, and Bai-Ou Guan,
“Faraday-rotation-based miniature magnetic field sensor using polarimetric heterodyning fiber grating laser,”
Opt. Lett., vol. 38, no. 5, pp. 688-690, 2013.
10.Yanzhen Tan, Lipeng Sun, Long Jin, Jie Li, Bai-Ou Guan,
“Microfiber Mach-Zehnder interferometers based on long period grating for sensing applications,”
Optics Express, vol. 21, no. 1, pp. 154-164, 2013.
11.Ran Yang, Long Jin, Lipeng Sun, Jie Li, and Bai-Ou Guan,
“Temperature-compensated refractive index sensing using a single Bragg grating in an abrupt fiber taper,”
IEEE Photonics Journal, vol. 5, no. 2, Art. no. 7100208, 2013.
12.Long Jin, Zhan Quan, Linghao Cheng, and Bai-Ou Guan,
“Hydrostatic Pressure Measurement With Heterodyning Fiber Grating Lasers: Mechanism and Sensitivity Enhancement,”
Journal of Lightwave Technology, vol. 31, no. 9, pp. 1488-1494, 2013.
13.Long Jin, Bai-Ou Guan and Huifeng Wei,
“Sensitivity characteristics of Fabry-Perot pressure sensors based on hollow-core fibers,”
Journal of Lightwave Technology, vol. 31, no. 15, pp. 2526-2532, 2013.
14.Linghao Cheng, Zhenzhen Guo, Jianlei Han, Long Jin, and Bai-Ou Guan,
“Ampere force based magnetic field sensor using dual-polarization fiber laser,”
Opt. Express, vol. 21, no. 11, pp. 13419-13424, 2013.
15.Shuai Gao, Long Jin, Yang Ran, Li-Peng Sun, Jie Li, and Bai-Ou Guan,
"Temperature compensated microfiber Bragg gratings,"
Opt. Express, vol. 20, no. 16, pp. 18281-18286, Jul. 30, 2012.
16.Yang Ran, Long Jin, Lipeng Sun, Jie Li, and Bai-Ou Guan,
"Bragg gratings in rectangular microfiber for temperature independent refractive index sensing,"
Opt. Lett., vol. 37, no. 13, pp. 2649-2651, Jul. 1, 2012. 3. 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, Jun. 15, 2012.
17.Bai-Ou Guan, Long Jin, Yang Zhang, and Hwa-Yaw Tam,
"Polarimetric heterodyning fiber grating laser sensors,"
Invited paper, Journal of Lightwave Technology, vol. 30, no. 8, pp. 1097-1112, Apr. 15, 2012.
18.Yan-Nan Tan, Long Jin, Linghao Cheng, Zhan Quan, Mengping Li, and Bai-Ou Guan,
"Multi-octave tunable RF signal generation based on a dual-polarization fiber grating laser,"
Opt. Express, vol. 20, no. 7, pp. 6961-6967, Mar. 26, 2012.
19.Long Jin, Yan-Nan Tan, Zhan Quan, Meng-Ping Li, and Bai-Ou Guan,
"Strain-insensitive temperature sensing with a dual polarization fiber grating laser,"
Opt.Express, vol. 20, no. 6, pp. 6021-6028, Mar. 12, 2012.
20.Yang Ran, Long Jin, Yan-Nan Tan, Li-Peng Sun, Jie Li, and Bai-Ou Guan,
"High-efficiency ultraviolet inscription of Bragg gratings in microfibers,"
IEEE Photonics Journal, vol. 4, no. 1, pp. 181-186, Feb. 2012.
21.J. Ma, J. Ju, L. Jin, and W. Jin,
"A compact fiber-tip micro-cavity sensor for high-pressure measurement",
IEEE Photonics Technology Letters, vol. 23, no. 21, pp. 1561-1563, Nov. 1, 2011.
22.J. Ma, J. Ju, L. Jin, and W. Jin,
Fiber-tip micro-cavity for temperature and transverse load sensing,"
Optics Express, vol. 19, no. 13, pp. 12418-12426, Jun. 20, 2011.
23.Long Jin, Wei Jin, Jian Ju,
"Investigation of long-period grating resonances in hollow-core photonic bandgap fibers,"
J. Lightwave Technol., vol. 29, no. 11, pp. 1708-1714, Jun. 1, 2011.
24.Yang Ran, Yan-Nan Tan, Li-Peng Sun, Shuai Gao, Jie Li, Long Jin, and Bai-Ou Guan,
"193nm excimer laser inscribed Bragg gratings in microfibers for refractive index sensing,"
Opt. Express, vol. 19, no. 19, pp. 18577-18583, Sep. 22, 2011.
25.Yan-Nan Tan, Yang Zhang, Long Jin, and Bai-Ou Guan,
"Simultaneous strain and temperature fiber grating laser sensor based on radio-frequency measurement,"
Opt. Express, vol. 19, pp. 20650-20656, Oct. 10, 2011.
26.Jie Li, Li-Peng Sun, Shuai Gao, Zhan Quan, Yong-Liang Chang, Yang Ran, Long Jin, and Bai-Ou Guan,
"Ultrasensitive refractive-index sensors based on rectangular silica microfibers,"
Opt. Lett., vol. 36, no. 18, pp. 3593-3595, Sep. 15, 2011.
27.Long Jin, Wei Jin, Jian Ju, Yiping Wang,
"Coupled local-mode theory for strongly modulated long period gratings,"
J. Lightwave Technol., vol. 28, no. 12, pp. 1745-1751, Jun. 15, 2010.
28.Shujing Liu, Long Jin, Wei Jin,
"Fabrication of long period gratings by femtosecond -laser-induced filling of air-holes in photonic crystal fibers,"
IEEE Photon. Technol. Lett., vol. 22, no. 22, pp. 1635-1637, Nov. 15, 2010.
29.Shujing Liu, Long Jin, Wei Jin, D. N. Wang, Changrui Liao, Ying Wang,
"Structural long period gratings made by drilling micro-holes in photonic crystal fibers with a femtosecond infrared laser,"
Optics Express, vol. 18, no. 6, pp. 5496-5503, Mar. 15, 2010.
30.Changrui Liao, Ying Wang, D. N. Wang, Long Jin,
"Femtosecond laser inscribed long-period gratings in all-solid photonic bandgap fibers,"
IEEE Photonics Technology Letters, vol. 22, no. 6, pp. 425-427, Mar. 15, 2010.
31.Yiping Wang, Hartmut Bartelt, Wolfgang Ecke, Klaus Moerl, Hartmut Lehmann, Kerstin Schroeder, Reinhardt Willsch,
Jens Kobelke, Manfred Rothhardt, Ron Spittel, Liye Shan, Sven Brueckner, Wei Jin, Xiaoling Tan, Long Jin,
"Thermo-Optic Switching Effect Based on Fluid-Filled Photonic Crystal Fiber,"
IEEE Photonics Technology Letters, vol. 22, no. 3, pp. 164-166, Feb. 1, 2010.
32.Long Jin, Wei Jin, Jian Ju,
"Directional bend sensing with a CO2-laser-inscribed long period grating in a photonic crystal fiber,"
J. Lightwave Technol., vol. 27, no. 21, pp.4884-4891, Nov. 1, 2009.
33.Long Jin, Zhi Wang, Yange Liu, Guiyun Kai, Xiaoyi Dong,
"Ultraviolet-inscribed long period gratings in all-solid photonic bandgap fibers,"
Opt. Express, vol. 16, no. 25, pp. 21119-21131, Dec. 8, 2008.
34.Long Jin, Bai-Ou Guan, Qiang Fang, Zhi Wang, Jianguo Liu, Yang Yue, Guiyun Kai, Xiaoyi Dong,
"Bragg gratings inscribed in photonic crystal fiber with a high-index germano-silicate core,"
Chin. Phys. Lett., vol. 25, no. 1, 160-163, Jan. 2008.
35.Long Jin, Zhi Wang, Qiang Fang, Yange Liu, Bo Liu, Guiyun Kai, Xiaoyi Dong,
"Spectral characteristics and bend response of Bragg gratings inscribed in all-solid bandgap fibers",
Opt. Express, vol.15, no.23, pp. 15555-15565, Nov. 12, 2007.
36.Long Jin, Zhi Wang, Qiang Fang, Yange Liu, Bo Liu, Guiyun Kai, Xiaoyi Dong, Bai-Ou Guan,
"Bragg grating resonances in all-solid bandgap fibers",
Opt. Lett., vol.32, no.18, pp.2717-2719, Sep. 15, 2007.
37.Long Jin, Guiyun Kai, Jinyan Li, Wei Chen, Yange Liu, Zhi Wang, Jianguo Liu, Jian Zhang, Shuzhong Yuan, Xiaoyi Dong,
"Fiber Bragg gratings inscribed in homemade microstructured fibers",
Chin. Phys. Lett., vol. 24, no. 6, pp.1603-1606, Jun. 2007.
38.Long Jin, Weigang Zhang, Jing Li, Hao Zhang, Bo Liu, Qingchang Tu, Guiyun Kai, Xiaoyi Dong,
"Two-dimensional bend sensing with a cantilever-mounted FBG",
Meas. Sci.&Techonol., vol.17, no.1, pp.168-172, Jan. 2006.
39.Long Jin, Weigang Zhang, Hao Zhang, Bo Liu, Jian Zhao, Qinchang Tu, Guiyun Kai, Xiaoyi Dong,
"An embedded FBG sensor for simultaneous measurement of stress and temperature",
IEEE Photon. Technol. Lett., vol.18 no.1-4, pp.154-156, Jan.-Feb. 2006.
40.Yuhua Li, D. N. Wang, Long Jin,
"Single-mode grating reflection in all-solid photonic bandgap fibers inscribed by use of femtosecond laser pulse irradiationthrough a phase mask,"
Opt. Lett., vol. 34, no. 8, 1264-1266, Apr. 15, 2009.
41.Qing Shi, Zhi Wang, Long Jin, Yuan Li, Hao Zhang, Fuyun Lu, Guiyun Kai, Xiaoyi Dong,
"A hollow-core photonic crystal fiber cavity based multiplexed Fabry-Perot interferometric strain sensor system,"
IEEE Photon. Technol. Lett., vol. 20, no.13-16, pp. 1329-1331, Jul.-Aug., 2008.
42.Qiang Fang, Zhi Wang, Long Jin, Jianguo Liu, Yang Yue, Yange Liu, Guiyun Kai, Shuzhong Yuan, and Xiaoyi Dong,
"Dispersion design of all-solid photonic bandgap fiber,"
J. Opt. Soc. Am. B, vol. 24, no. 11, pp. 2899-2905, Nov. 2007.
43.Qiang Fang, Zhi Wang, Guiyun Kai, Long Jin, Yang Yue, Jiangbing Du, Qing Shi, Zhanyuan Liu, Bo Liu, Yange Liu,Shuzhong,Xiaoyi Dong,
"Proposal for all-solid photonic bandgap fiber with improved dispersion characteristics,"
IEEE Photon. Technol. Lett., vol. 19, no. 13-16, pp. 1239-1241, Jul.-Aug. 2007.
申报专利:
1.一种高灵敏度微纳光纤折射率传感器及其制备方法,201110217866.4。
2.基于正交双偏振光纤激光器的液压传感器,201210241973.5。
3.一种实现光纤光栅温度补偿的光波导结构及其制备方法,201210224313.6。
4.一种微纳光纤光栅折射率传感器,201210152365.7。
5.一种高灵敏度微纳光纤折射率传感器及其制备方法,201110217866.4。
6.一种低温环境下快速响应的可复用光纤氢传感器,201310311032.9。
7.一种微纳光纤光栅激光写入方法及装置,201110459986.5。
8.一种实现光纤光栅温度补偿的光波导结构及其制备方法,201210224313.6。
9.基于光纤光栅激光器的磁场传感器及测量方法,201210560506.9。
10.一种响应快速锥形微纳光纤湿度传感器及其制备方法,201310203956.7。
11.基于光纤光栅激光器的磁场传感器灵敏度调谐方法,201310637283.6。