个人简介
2006年本科毕业于华中科技大学光信息科学与技术专业。2006年至2008年担任华中科技大学思想政治工作辅导员。2013年在英国南安普敦大学光电子研究中心ORC(Optoelectronics Research Center, the University of Southampton, UK)取得光电子学博士学位,博士期间主要从事先进光通信系统中平面布拉格光栅器件研究。ORC是世界上最顶尖最有影响力的光子学研究机构之一,当今全球光纤设施中许多重要发展都源于此,如掺铒光纤放大器EDFA、光纤陀螺技术以及光纤激光技术等。2013年至2014年在武汉世纪金桥安全技术有限公司担任研究主管。2014年5月至今在华中科技大学光学与电子信息学院和下一代互联网接入系统国家工程实验室工作。
研究领域
主要研究基于新型光纤及波导器件的光学传感信号处理,包括新型光栅器件的微波光子学信号处理、特种空芯光纤设计与应用,以及光纤气体传感组网相关研究。
近期论文
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[1]Y. Yu, G. Chen,C. Sima*, and X. Zhang, “Intra-chip optical interconnection based on polarization division multiplexing photonic integrated circuit”, Optics Express25(23): 28330-28336, 2017. [2]C. Sima*, B. Cai, B. Liu, Y. Gao, Y. YU, J. Gates, M. Zervas, P.Smith, and D. Liu, “Integrated Reconfigurable Photonic Filters based on Interferometric Fractional Hilbert Transforms,”Applied Optics, 56(32):1-7, 2017. [3]D. Yu, Q. Mo, Z. Hong, S. Fu*,C. Sima*, M. Tang, and D. Liu, “Temperature-insensitive fiber twist sensor based on elliptical-core few-mode fiber,”Optics Letters, 41(8): 4617-4620, 2016. [4]B. Liu,C. Sima*, W. Yang, B. Cai, D. Liu, Y. Yu, J. Gates, M. Zervas, P. Smith. “Experimental Investigation of Large Time-Bandwidth Product Photonic Hilbert Transformer based on compact Bragg grating,”IEEE Photonics Journal, 8(4): 1-8, 2016. [5]D. Liu, Q. Sun, P. Lu, L. Xia, andC. Sima.“Research progress in the key device and technology for fiber optic sensor network,”Photonic Sensors, 6(1):1-25, 2016.(Invited Review) [6]C. Holmes, J. Gates, L. Carpenter, H. Rogers, R. Parker, P. Cooper,C. Sima,F.Adikan, C. Gawith, and P. Smith.“Direct UV-written planar Bragg grating sensors,”Measurement Science and Technology, 26(11): 112001, 2015.(Invited Review) [7]C. Sima, J. Gates, P. Mennea, C. Holmes, M. Zervas, and P. Smith. “Terahertz bandwidth photonic Hilbert transformers based on synthesized planar Bragg grating fabrication,"Optics Letters, 38(17): 3448-3451, 2013. [8]C. Sima, J. Gates, H. Rogers, P. Mennea, C. Holmes, M. Zervas, P. Smith. “Phase controlled integrated interferometric single-sideband filter based on planar Bragg gratings implementing photonic Hilbert transform,”Optics Letters, 38(5): 727–729, 2013. [9]C. Sima, J. Gates, H. Rogers, P. Mennea, C. Holmes, M. Zervas, and P. Smith. “Ultra-wide detuning planar Bragg grating fabrication technique based on direct UV grating writing with electro-optic phase modulation,"Optics Express, 21(13): 15747-15754, 2013.