- 邵理阳 的主页: 个人信息 科学研究 论文成果 荣誉奖励 科研团队 课程教学 招生信息 English
基本信息
邵理阳教授
招收硕士研究生学科:
信息与通信工程
电子科学与技术
工作单位:信息学院 通信工程系
信息光子与通信研究中心
联系方式
通信地址:成都市二环路北一段111号
电子邮箱:lyshao@home.swjtu.edu.cn
办公电话:**
办公地点:西南交通大学信息楼01304#
个人简介
邵理阳,博士,教授。分别于2001年和2008年在浙江大学光电系获光学工程专业学士和博士学位。2001-2003年,先后在深圳昂纳光通信有限公司和杭州聚光科技有限公司任研发工程师。博士期间曾获浙江大学-香港理工大学联合培养项目资助,在香港理工大学合作研究两年(2006-2009)。博士毕业后,先后在加拿大卡尔顿大学(2009-2011)、澳大利亚悉尼大学(2012澳大利亚政府奋进奖学金计划)、香港理工大学(2011-2013)从事博士后研究工作。2008-2012年为中国计量学院兼职副教授。
2013年加入西南交通大学信息科学与技术学院,信息光子与通信研究中心。主要研究方向有等。目前已在国际主要期刊及会议上发表学术论文共80多篇(第一作者31篇),其中SCI 收录52篇,一篇国际杂志特邀综述文章和4次国际会议特邀报告,论文被他人引用890多次(其中SCI引用260多次),拥有3项中国发明专利;研究成果“微型光纤矢量倾斜仪”被Nature Photonic(影响因子:29.278)作为研究亮点转载报导。
长期担任多个国际会议技术委员会委员和本领域国际著名SCI期刊Opt. Lett., Opt. Express, J. Lightwave Technol., Photon. Technol. Lett.等在内的10多种期刊的审稿人。
主要研究方向
现主要研究方向:
(1) 光纤传感技术
(2)光纤光栅的制作与应用
(3) 光纤激光器
(4) 光子晶体光纤器件
(5) 分子自组装光学器件
(6) 微纳光纤器件及传感
(7) 物联网技术
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科学研究
主持及参与项目:
国家自然科学基金项目:“基于微结构光纤的新型功能器件及传感应用研究”,2015.01-2018.12,批准号:**,主持;
科技部国际合作专项:“轨道线路安全监测的光纤传感技术研究”,2014.4-2017.3,项目号:2014DFA11170,主持
国家自然科学基金项目:“倾斜光纤光栅表面等离子体共振氢气传感器研究”,2011.01-2013.12,批准号:**,主持;
香港理工大学研究基金项目:“Fiber Optic Hydrogen Sensor based on Surface Plasmon Resonance”,
批准号:G-YX5C,2011.08-2013.08,主持;
加拿大工业合作项目,“Pressure-Temperature Sensors for Downhole Oil and Gas Applications”,2009-2012,主研;
浙江省自然科学基金杰出青年团队项目(董新永研究团队,编号:R**),第三项目承担人
国家自然科学基金项目:“光纤光栅生化探针及应用研究”,2007.01-2009.12,批准号:**,主研;
香港理工大学研究基金项目:“Optical Bioprobes Based on Fibre Grating Technology”,
批准号:G-U263, 2007.08-2008.06,主持;
香港理工大学研究基金项目:“Development of Optical Bioprobes Based on Long-period Fiber Gratings”,
批准号:G-U224,2006.08-2007.08,主研;
浙江大学研究基金项目,“基于LPG和FBG的温度补偿折射率传感器的研究”,2004.05-2006.05,主研;
浙江大学研究基金项目,“拉曼放大器增益平坦的自动控制研究”,2003.10-2004.03,主研;
杭州聚光科技有限公司研发项目,“调制吸收光谱测试技术研究”,2003.02-2003.06, 主研;
深圳昂纳光通讯有限公司研发项目:“基于AWG器件的DWDM模块研发”, 2001.07-2002.09,负责器件封装、各项光学参数测试、ITUT以及Bellcore相关标准的试验。
Copyright ? 2013 http://inc.swjtu.edu.cn 西南交通大学信息网络中心
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学术论文
期刊论文:
[J46] L.Y. Shao, M.J. Yin, H.-Y. Tam, J. Albert, “Fiber Optic pH Sensor with Self-Assembled Polymer Multilayer Nanocoatings”, Sensors 13, 1425-1434 (2013).
[J45] M. Yin, C. Wu, L.Y. Shao, W. K. E. Chan, A. P. Zhang, C. Lu, and H. Tam, "Label-free, disposable fiber-optic biosensor for DNA hybridization detection," Analyst (2013).
[J44] J. Albert, L.Y. Shao, and C. Caucheteur, “Tilted Fiber Bragg Gratings Sensors,” Laser & Photonics Reviews 7, 83-108 (2013).(特邀综述论文)
[J43] T. Wang, L.Y. Shao, J. Canning, and K. Cook, "Temperature and strain characterization of regenerated gratings," Opt. Lett. 38, 247-249 (2013).
[J42] X. Dong, L. Hu, L.Y. Shao, Y. Wang, and J. Zheng, "Temperature-insensitive 2D fiber Bragg grating TILT sensor," Microwave and Optical Technology Letters 55, 344-346 (2013).
[J41] L.Y. Shao, T. Wang, J. Canning, K. Cook, and H.-Y. Tam, "Bulk regeneration of optical fiber Bragg gratings," Appl. Opt. 51, 7165-7169 (2012).
[J40] K. Cook, L.Y. Shao, and J. Canning, "Regeneration and helium: regenerating Bragg gratings in helium-loaded germanosilicate optical fibre," Opt. Mater. Express2, 1733-1742 (2012)
[J39] W. Zhou, Y. Zhou, X. Dong, L.Y. Shao, J. Cheng, and A. Jacques, "Fiber-Optic Curvature Sensor Based on Cladding-Mode Bragg Grating Excited by Fiber Multimode Interferometer," IEEE Photon. J. 4, 1051-1057 (2012).
[J38] L.Y. Shao, M. B. Jakubinek, T. Sun, B. Simard and J. Albert, “Four-wave mixing in carbon nanotube-coated optical fiber gratings,” Applied Physics Letters 100, 071108-071103 (2012)
[J37] X.Y. Dong, Y. Liu, L.Y. Shao, J. Kang, and C. L. Zhao, “Temperature-Independent Fiber Bending Sensor Based on a Superimposed Grating,” IEEE Sensors Journal, vol.11, no.11, pp.3019-3022, Nov. 2011
[J36] Y. Zhou, W. Zhou, C. C. Chan, W. C. Wong, L.Y. Shao, J. Cheng, and X. Dong, “Simultaneous measurement of curvature and temperature based on PCF-based interferometer and fiber Bragg grating,” Optics Communications 284, 5669-5672, September 2011.
[J35] W. Zhou, W. C. Wong, C. C. Chan, L.Y. Shao, and X. Dong, “Highly sensitive fiber loop ringdown strain sensor using photonic crystal fiber interferometer,” Appl. Opt. 50, 3087-3092, July 2011.
[J34] L.Y. Shao, J. P. Coyle, S. T. Barry, and J. Albert, “Anomalous permittivity and plasmon resonances of copper nanoparticle conformal coatings on optical fibers,” Opt. Mater. Express 1, 128-137, May 2011
[J33] W. J. Zhou, X. Y. Dong, L.Y. Shao, C. C. Chan, C. L. Zhao, and P. Shum, “Compact refractometer based on extrinsic-phase-shift fiber Bragg grating,” Sensors and Actuators A-Physical 168, 46-50, 2011.
[J32] L.Y. Shao and J. Albert, “Lateral force sensor based on a core-offset tilted fiber Bragg grating,” Optics Communications, 284 (7), 1855-1858, April 2011.
[J31] M. Li, L.Y. Shao, J. Albert and J. P. Yao, “Tilted fiber Bragg grating for chirped microwave waveform generation,” IEEE Photonics Technology Letters. 23, 314-316, 2011.
[J30] M. Li, L.Y. Shao, J. Albert and J. P. Yao, “Continuously tunable photonic fractional temporal differentiator based on a tilted fiber Bragg grating,” IEEE Photonics Technology Letters 23 (4), 251-253, Feb 2011.
[J29] C. Caucheteur, Y. Shevchenko, L.Y. Shao, M. Wuilpart, and J. Albert, “High resolution interrogation of tilted fiber grating SPR sensors from polarization properties measurement,” Opt. Express 19(2), 1656-1664, Jan 2011
[J28] L.Y. Shao, Q. Jiang, and J. Albert, “Fiber optic pressure sensing with conforming elastomers”, Applied Optics, Vol. 49, Iss. 35, pp. 6784-6788, 10 December 2010
[J27] H. L. Bao, X.Y. Dong, L.Y. Shao, C.-L. Zhao, S.Z. Jin, “Temperature-insensitive 2-D tilt sensor by incorporating fiber Bragg gratings with a hybrid pendulum”, Optics Communications, Volume 283, Issue 24, Pages 5021-5024, 15 December 2010.
[J26] L.Y. Shao, L.Y. Xiong, C. K. Chen, A. Laronche, J. Albert, “Directional Bend Sensor Based on Re-grown Tilted Fiber Bragg Grating,” Journal of Lightwave Technology, vol.28, no.18, pp.2681-2687, Sept.15, 2010
[J25] L. Li, X. Y. Dong, L.Y. Shao, C. L. Zhao, and Y. L. Sun. “Temperature-independent acceleration measurement with a strain-chirped fiber Bragg grating”, Optoelectronics and Advanced Materials-Rapid Communications 4(7): 943-946, July 2010.
[J24] H. L. Bao, X. Y. Dong, L.Y. Shao, C.-L. Zhao, C. C. Chan, and P. Shum, “Temperature-Insensitive 2-D Pendulum Clinometer Using Two Fiber Bragg Gratings,” IEEE Photonics Technology Letters, vol.22, no.12, pp.863-865, June 15, 2010
[J23] L.Y. Shao, Y. Shevchenko and J. Albert, “Intrinsic temperature sensitivity of tilted fiber Bragg grating based surface plasmon resonance sensors”, Opt. Express 18 (11), 11464-11471, May 2010.
[J22] L.Y. Shao, and J. Albert, “Compact fiber-optic vector inclinometer,” Opt. Lett. 35 (7), 1034-1036, March 2010 (Nature Photonics 作为研究亮点报导)
[J21] L.Y. Shao, A. Laronche, M. Smietana, P. Mikulic, W.J. Bock, and J. Albert, “Highly sensitive bend Sensor with hybrid long-period and tilted fiber Bragg grating”, Optics Communications, vol. 283, no. 13, pp. 2690-2694, 2010.
[J20] N. Ni, C.C. Chan, W.C. Wong, L.Y. Shao, X.Y. Dong, P. Shum, “Cavity ring-down long period grating pressure sensor”, Sensors and Actuators A: Physical, Volume 158, Issue 2, Pages 207-211, Mar 2010
[J19] H. Bao, X. Dong, C. Zhao, L.Y. Shao, C.C. Chan and P. Shum, “Temperature-insensitive FBG tilt sensor with a large measurement range,” Optics Communications, vol. 283(6), pp. 968-970, Mar 2010
[J18] T. Guo, L.Y. Shao, H.-Y. Tam, P. A. Krug, and J. Albert. “Tilted fiber grating accelerometer incorporating an abrupt biconical taper for cladding to core recoupling”, Optics Express, 17 (23): 20651-20660, Nov 2009
[J17] X. Dong, L.Y. Shao, P. Shum, et al. “Hybrid fiber grating-based optical comb filters with changeable channel numbers”, Journal of Optoelectronics and Advanced Materials,11 (7): 1015-1019, JUL 2009
[J16] L.Y. Shao, J. Zhao, X. Dong, H. Y. Tam, C. Lu, and S. He. “Long-Period Grating Fabricated by Periodically Tapering Standard Single-Mode Fiber”, Appl. Opt. 47 (10), 1549-1552, Apr 2008.
[J15] L.Y. Shao, S.-T. Lau, X.Y. Dong, et al. “High Frequency Ultrasonic Hydrophone Based on a Cladding-Etched DBR Fiber Laser”, IEEE Photonics Technology Letters, 20 (8): 548-550 April 15 2008
[J14] S.T. Lau, L.Y. Shao, H.L.W Chan, et al. “Characterization of a 40 MHz Focused Transducer with a Fiber Grating Laser Hydrophone”, IEEE Ultrasonics, Ferroelectrics and Frequency Control (IEEE UFFC), 55(12): 2714-2718, DEC 2008.
[J13] H. Y. Fu, H. Y. Tam, L.Y. Shao, X. Dong, P. K. A. Wai, C. Lu, and S. K. Khijwania, “Pressure sensor realized with polarization-maintaining photonic crystal fiber-based Sagnac interferometer”, Appl. Opt., vol. 47, no. 15,pp. 2835-2839, May 2008.
[J12] X.Y. Dong, L. Y. Shao, H. Y. Fu, H. Y. Tam, and C. Lu, “Intensity-modulated fiber Bragg grating sensor system based on radio-frequency signal measurement”, Optics Letters, Vol.33, Issue. 5, pp. 482-484, Mar 2008
[J11] L.Y. Shao, Xinyong Dong and Hwa-Yaw Tam, “Fiber Optic Load Sensor Based on a Polarimetric DBR Fiber Laser”, Electronics letters, vol. 44, no. 2, pp. 99-100, Jan 2008.
[J10] X.-F. Huang, Z.-M. Chen, L.Y. Shao, et al. “Design and characteristics of refractive index sensor based on thinned and microstructure fiber Bragg grating”, Applied Optics, Vol. 47 Issue 4, pp.504-511, Feb 2008.
[J9] J.H. Yan, A.P. Zhang, L.Y. Shao, et al. “Simultaneous measurement of refractive index and temperature by using dual long-period gratings with an etching process”, IEEE Sensors Journal 7 (9-10): 1360-1361 SEP-OCT 2007
[J8] L.Y. Shao, X.Y. Dong, A.P. Zhang, et al. “High-resolution strain and temperature sensor based on distributed Bragg reflector fiber laser”,IEEE Photonics Technology Letters, 19 (17-20): 1598-1600 SEP-OCT 2007
[J7] H.Y. Fu, W.S. Liu, L.Y. Shao, “Tunable flat-top fiber Bragg grating filters fabricated in hydrogen-loaded graded-index multimode fibers”, Microwave and Optical Technology Letters,Vol.49, Issue 4 , Pages 841-843, Feb 2007
[J6] L.Y. Shao, A.P. Zhang, W.S. Liu, et al. “Optical refractive-index sensor based on dual fiber-Bragg gratings interposed with a multimode-fiber taper”, IEEE Photonics Technology Letters 19 (1): 30-32 JAN 1 2007
[J5] L.Y. Shao, J. F. Song, A. P. Zhang, et al. “Novel FBG triangular filter for interrogating a FBG sensor in dynamic strain measurement”, Optoelectronics Letters, Vol. 2 No. 5, pp. 0336- 0338, Sep 2006.
[J4] N. Zhu, J. Song, L.Y. Shao. “Effects of shaded facets on the performance of metal-coated etched diffraction grating demultiplexer”,Optics Communications 266 (1): 117-121 OCT 1 2006. (Times cited: 0; 2009IF: 1.316)
[J3] J. F. Ding, A. P. Zhang, L. Y. Shao, et al. “Fiber-taper seeded long-period grating pair for a highly sensitive refractive-index sensor”, IEEE Photonics Technology Letters, Vol.17, No. 6, pp. 1247-1249, Jun 2005.
[J2] A. P. Zhang, L. Y. Shao, J. F. Ding, et al. “Sandwiched long-period gratings for simultaneous measurement of refractive index and temperature”, IEEE Photonics Technology Letters, Vol.17, No. 11, pp. 2397- 2399, Nov 2005.
[J1] X. L. Zhang, L. Y. Shao, Z.W. Yu, et al. “Automatic real-time control for gain-flattened fiber Raman amplifiers”, Optics Communications, 239 (1-3): 79-84 SEP 1 2004
会议论文:
[C29] L.Y. Shao, M. J. Yin, H. Y. Tam, and J. Albert, "Fiber optic pH sensor with self-assembled multilayer nanocoatings on tilted FBG," OFS2012 22nd International Conference on Optical Fiber Sensors, Proc. SPIE 8421, 84216A (2012)
[C28] K. Cook, L. Y. Shao, J. Canning, T. Wang, Y. Luo, and G.-D. Peng, "Bragg gratings in few-mode Er/Al/Bi/P Co-doped germanosilicate ring-core fibre," OFS2012 22nd International Conference on Optical Fiber Sensors, Proc. SPIE 8421, 842155 (2012).
[C27] J. Canning, K. Cook, and L. Y. Shao, "Helium and regeneration in optical fibres," OFS2012 22nd International Conference on Optical Fiber Sensors, Proc. SPIE 8421, 8421CA (October 29, 2012)
[C26] J. Albert, A. Ianoul, S. Barry, C. Caucheteur, and L.-Y. Shao, "Plasmonics on fibers coated with metal nanoparticles," in European Conference and Exhibition on Optical Communication(Optical Society of America, Amsterdam, The Netherlands, 2012), p. Tu.4.F.5.
[C25] J. Albert, C. Caucheteur, L. Y. Shao, A. Ianoul, and S. Barry, "Plasmons and nanoparticle coatings on optical fibers: playing with Tilted Fiber Bragg Gratings," in Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides, OSA Technical Digest (online) (Optical Society of America, 2012), paper BTu2E.1.
[C24] L.Y. Shao, M. B. Jakubinek, T. Sun, B. Simard, and J. Albert, “Four-wave mixing generation in carbon nanotube-coated optical fiber grating,” Oral paper WU2, IEEE Photonic Society Annual meeting (Washington, October 2011)
[C23] L.Y. Shao, Jason Coyle, Sean Barry, and Jacques Albert, “Plasmonic Properties of Copper Nanoparticles Deposited on Tilted Fiber Bragg Gratings,” Paper CH2.3, CLEO-Europe (Munich, May 2011)
[C22] L.Y. Shao, and J. Albert, “Transverse load sensing with a tilted fiber Bragg grating compressed between conforming elastomers,” International Conference on Optical Fibre Sensors (OFS-21), Canada, paper ID: 7753-6, May 2011.
[C21] J. Albert, C. Caucheteur, and L.Y. Shao, “Polarization properties of tilted fiber Bragg gratings for novel sensing modalities”, Proceedings of the SPIE Conference on Defense, Security and Sensing, Fiber Optic Sensors and Applications VIII , Orlando USA, April 2011, paper 8028-1.
[C20] M. Li, L.Y. Shao, J. Albert and J. P. Yao, “Chirped microwave pulse generation using a tilted fiber Bragg grating,” The 23nd IEEE Lasers and Electro Optics Society Annual Meeting (LEOS 2010), paper ThE5.
[C19] L.Y. Shao, Y. Shevchenko and J. Albert, “Temperature cross-sensitivity of tilted fiber Bragg grating surface plasmon sensors.” Photonics North 2010, Niagara Falls, Canada, paper PLAS-3-3-3, June 1-3, 2010
[C18] L.Y. Shao, and J. Albert, “Novel fiber optical inclinometer based on a concatenated fused taper and tilted fiber Bragg grating,” CLEO/QELS 2010, San Jose, USA, paper CFH3, May 16-21, 2010
[C17] T. Guo, L.Y. Shao, H. Y. Au, et al. “Tilted fiber Bragg grating-based accelerometer”, International Conference on Optical Fibre Sensors (OFS-20), Edinburgh, UK, Paper ID: 7503-106 (Proc. of SPIE Vol. 7503, 750335, Oct 05-09, 2009)
[C16] T. Guo, L.Y. Shao, H. Tam, and J. Albert, "Highly Sensitive Fiber-Optic Accelerometer Based on an Offset Tilted Fiber Bragg Grating," in Asia Communications and Photonics Conference and Exhibition, Technical Digest (CD) (Optical Society of America, 2009), paper TuFF1.
[C15] L.Y. Shao, S.-T. Lau, X.Y. Dong, et al, “High-frequency ultrasound measurement using fiber grating laser hydrophone”, Asia-Pacific Optical Communications 2008 (APOC’08), Hangzhou, ID: 7134-141 (Proc. SPIE Vol. 7134, 71343U, Nov. 11, 2008).
[C14] J. Sun, C. C. Chan, Y. F. Zhang, L. T. Zheng, H. L. Ho, X. Y. Dong, and L. Y. Shao, “Glucose optical biosensor with sol-gel-coated long-period gratings”, Asia-Pacific Optical Communications 2008 (APOC’08), Hangzhou, ID: 7134-150 (Proc. SPIE Vol. 7134, 713443, Nov. 11, 2008).
[C13] Y.F. Zhang, C.C. Chan, J. Sun, L.T. Zheng, H.L. Ho, X.Y. Dong, and L. Y. Shao, “Long period grating glucose sensor based on sol-gel entrapment technique”, International Conference on Advanced Infocomm Technology, Shenzhen, China, 28-31 July, 2008.
[C12] L.Y. Shao, X. Dong, and H. Y. Tam, “Simultaneous measurement of strain and temperature with polarimetric DBR fiber laser sensor,” International Conference on Advanced Infocomm Technology, Shenzhen, China, 28-31 July, 2008.
[C11] J.F. Ding, L.Y. Shao, H. Su, S. C. Ruan, “A highly sensitive refractive-index sensor based on the long-period grating pair with a fiber-taper in-between”, International Conference on Advanced Infocomm Technology, Shenzhen, China, 28-31 July, 2008.
[C10] X. Dong, L.Y. Shao, H.-Y. Tam et al, “Hybrid fiber grating-based optical comb filters”, International Conference on Advanced Infocomm Technology, Shenzhen, China, 28-31 July, 2008.
[C9] K. S. Tsang, R. Man, L.Y. Shao, H. Y. Tam, C. Lu, P. K. A. Wai, “Single-frequency single polarization fiber ring laser at 1053 nm,” OECC/ACOFT 2008, Australia, (Proceedings of OECC/ACOFT 2008, Vol 1 and 2, pp. 508-509, 2008.
[C8] L.Y. Shao, J. Zhao, X. Dong, et al. “Long-period grating fabricated using resistive filament heating”, International Conference on Optical Fibre Sensors (OFS-19), Australia, paper ID: 7004-198, 2008.
[C7] X. Dong, L.Y. Shao, H. Y. Fu, et al. “FBG sensor interrogation based on RF signal measurement”, International Conference on Optical Fibre Sensors (OFS-19), Pirth, Western Australia, April 14-18, 2008.
[C6] L.Y. Shao, H.Y. Tam, A. P. Zhang, et al. “Multimode-Fiber Taper Interposed Fiber-Bragg Grating Refractometer for Simultaneous Refractive Index and Temperature Measurement”, the 8th IEEE Hong Kong LEOS Postgraduate Conference in Hong Kong, China,Dec 2007
[C5] C. Gu, L. Xu, W. H. Chung, L.Y. Shao, et al. “Gain switching of an Yb-doped DFB fiber laser”, Optoelectronic Devices and Integration II, Beijing, China, 12 November, 2007 ( Proc. SPIE, Vol. 6838, 683808, 2007)
[C4] L.Y. Shao, X. Dong, and H.-Y. Tam, “Transverse-load sensor based on a distributed Bragg reflector fiber laser”, Asia Optical Fiber Communication & Optoelectronic Exposition (AOE), p. 136-138, Shanghai, China, Oct. 17-19, 2007.
[C3] L.Y. Shao, S.-T. Lau, X. Dong, et al. “Ultrasonic hydrophone based on etched distributed-Bragg-reflector fiber laser”, 12th Optoelectronics and Communications Conference/16th International Conference on Integrated Optics and Optical Fiber Communication (OECC/IOOC2007), Session No. 13C3-3, Paper ID: 111,Yokohama, Japan, July 9-13, 2007.
[C2] L. Y. Shao, A. P. Zhang, J. H. Yan, et al. “Discrimination between refractive index and temperature by using a sandwiched structure of long-period gratings”, Asia-Pacific Optical Communications 2005 (APOC’05), Shanghai, ID: 6019-65 (Proceedings of SPIE, Vol. 6019, pp.60191S.1-60191S.8, 2005).
[C1] J. H. Yan, A. P. Zhang, L. Y. Shao, et al. “Broadband WDM filter based on an improved long-period grating pair”, Asia-Pacific Optical Communications 2005 (APOC’05), Shanghai, ID: 6019-78 (Proceedings of SPIE, Vol. 6019, pp.601925.1-601925.8, 2005).
详细引用情况请参阅来自“Google Citations”的统计链接.
http://scholar.google.com/citations?user=wL-LJrQAAAAJ&hl=en
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荣誉奖励
2012年 澳大利亚政府“奋进奖”,2012.3-2012.9 (该奖由澳大利亚政府设立,每年面向全球招聘博士后研究员,资助他们在该大学进行为期4-6个月的访问研究计划,当年全国只有20人获奖);
2011年 香港理工大学博士后奖,2011.8-2013.8,该奖由HKPU拨专款成立,每年面向全球招聘博士后研究员,资助他们在该大学进行为期两年的研究计划,当年只有25人获聘;
2006 年 浙江大学-香港理工大学联合培养项目奖学金,2006.8-2008.6,该奖由HKPU设立,在浙江大学选拔优秀研究生进行合作研究,当年共有4人获得资助。
2004年 浙江大学亚光奖学金、合勤奖学金,浙江大学优秀研究生一等奖学金,三好研究生
2000年 浙江大学刘永龄奖学金,浙江大学优秀学生一等奖学金、浙江大学三好学生、优秀学生干部
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科研团队
Teachers-教师
Professors: Wei Pan(潘炜)、Bin Luo(罗斌)、Lianshan Yan(闫连山)、Xihua Zou(邹喜华)、Zhiyong Zhang(张志勇)
Graduates-研究生
Ph.D Candidates: Zonglei Li(李宗雷)
Master students:
Grade-2012: Jun Liao(廖俊)、Gaopan Sun(孙高盼)、Hanbin Chen(陈韩彬)
Grade-2013: Yuan Luo(罗源)、Weiwei Huang(黄微卫)、Chunyu Zheng(郑春雨)、Mengfang Zhu(朱梦芳)、Kang Ouyang(欧阳康)
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课程教学
For PhD and Master students-博士/硕士研究生
Optical Communicaitons Technology(光通信技术)
For undergraduates-本科生
Modern Sensing Technology (现代传感技术)
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招生要求
本课题组具备良好的实验和学习条件,常年招收硕、博研究生。欢迎各位同学报考本研究组;欢迎本科生参加SRTP项目。
具备下面优点的学生将非常受欢迎:有强烈的求知欲;思路开阔;动手能力强;对自然科学有兴趣;英语水平较高,已通过6级考试。
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Add: Southwest Jiaotong University
No.111, North Section 1, 2nd Ring
Road, Chengdu (四川成都)
Office:#01304, Information Building
Email:lyshao@home.swjtu.edu.cn
liyangshao@gmail.com
Tel:+86-**
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Liyang SHAO(邵理阳)
PhD, Professor
School of Information Science and Technology (信息科学与技术学院)
Southwest Jiaotong University (西南交通大学)
Research Interests
(1) Fiber Grating Devices and Applications
(2) Fiber Laser and sensors
(3) Surface Plasmonics
(4) Self-assembled Photonics
Research Experiences
(6) Jul. 2013~present ,Professor, Southwest Jiaotong University, China
(5) Mar. 2012~Aug. 2012, Visiting Scholar, University of Sydney, Australia
(4) Aug. 2011~Aug. 2013, Postdoctoral Research Fellow, The Hong Kong Polytechnic Univerisyt, Hong Kong
(3) Aug. 2009~Aug. 2011, Postdoctoral Research Fellow, Carleton University, Canada
(2) Aug. 2006~Jun. 2009, Research Assistant/Associate, The Hong Kong Polytechnic Univerisyt, Hong Kong
(1) Jul. 2003~Jun. 2008, PhD Candidate,Zhejiang University, China
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