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深圳大学物理与光电工程学院导师教师师资介绍简介-雷蕾

本站小编 Free考研考试/2021-05-30

雷 蕾

姓名: 雷 蕾
性别: 女
研究方向:光子集成器件,光通信,光信号处理,超材料与超表面
职称:副教授、副研究员

邮箱:leilei@szu.edu.cn
座机:


个人简介 雷蕾,工学博士,副教授,光电信息科学与工程系副系主任,深圳市孔雀计划海外高层次人才,南山区领航人才。教育部“学术新人奖”、教育部“博士研究生国家奖学金”获得者。2014年华中科技大学武汉光电国家实验室获工学博士学位,丹麦技术大学光电工程学院研究助理;2015年加拿大国家科学研究院博士后,2016年加入深圳大学物理与光电工程学院工作。主要从事光子集成器件、光通信、光信号处理、超材料与超表面等方向的研究,在国际主流学术期刊 Photonics Research, Optics Letters, Optics Express, IEEE Journal of Lightwave Technology, IEEE Photonics Technology Letters等发表学术论文40余篇。现主持国家重点研发计划子课题,国家自然科学基金、广东省自然科学基金、深圳市高端人才科研启动项目等多个科研项目,并作为主要参与者先后参与重大国际(地区)合作研究项目、国家****基金、国家重点基础研究发展计划-973项目、国家自然科学基金等。 课题组常年招收(但不限于)光子集成、光通信、超材料等方向的博士后(35岁以下),欢迎大家联系交流! 联系方式:leilei@szu.edu.cn (邮箱)187-1927-4060 (电话)
个人信息 ● 近几年主持的科研项目: 1)国家重点研发计划子课题(2020.01-2022.12,190万元),硅基可编程重构全光信号处理芯片,主持,在研; 2)广东省自然科学基金面上项目(2020.01-2022.12,10万元),面向多模超信道全光码型转换的高非线性硅基光子集成芯片研究,主持,在研; 3) 国家自然科学基金青年项目(2019.01-2021.12,25万元),高非线性硅基狭缝波导实现多模全光逻辑运算的研究,主持,在研; 4) 深圳市海外高层次人才科研启动项目(2018.11-2021.12,270万元),超表面器件实现全光模拟及逻辑运算的研究,主持,在研; 5) 广东省自然科学基金博士启动项目(2017.01-2019.12,10万元),基于时域波带片的可重构全光成像及傅里叶变换,主持,结题; 6) 深圳大学青年教师启动项目(2016.05-2018.05,6万元),时域波带片实现相干光信号成像及傅立叶变换的研究,主持,已结题; 7) 加拿大魁北克省优秀博士后研究基金项目(FQRNT-MELS PBEEE,2015.04-2016.03,19.3万元),Incoherent Photonic Processing for Ultra-Broadband Microwave Signals,主持,已结题 ● 代表科研论文: 1)Y. Wang, H. Yang, W. Dong, L. Lei*, J. Xu*, X. Zhang and P. Xu, “Highly Nonlinear Organic-Silicon Slot Waveguide For Ultrafast Multimode All-Optical Logic Operations,” IEEE Photonics Journal, 12(6), ** (2020). 2)W. Dong, L. Lei, L. Chen, Y. Yu , and X. Zhang*,“All-Optical 2 × 2-Bit Multiplier at 40 Gb/s Based on Canonical Logic Units-based Programmable Logic Array (CLUs-PLA)”IEEE Journal of Lightwave Technology, 38(20), 5586-8894 (2020). 3)L. Lei*, F. Lou, K. Tao, H. Huang, X. Cheng and P. Xu, " Tunable and scalable broadband metamaterial absorber involving VO2-based phase transition", Photonics Research, 7(7), 734-741 (2019). 4)S. Xu, J. Zhang, L. Huang, Z. Xu, L. Lei* and P. Xu, “All-nickel Metamaterial Narrow-band Absorber for Mid-IR Gas Sensing”,The International Photonics and Optoelectronics Meeting (OSA-POEM 2019), OEDI-OTh3C.5, 11-14 November, Wuhan, China, 2019. (Oral) 5)J. Zhang, S. Xu, L. Huang, Z. Xu, J. Huang, L. Lei* and Ping Xu, “Dynamic broadband metamaterial absorber in VO2 ”, Asia Communications and Photonics Conference (OSA-ACP 2019), M4A.249, 2-5 November, Chengdu, China, 2019. 6)L. Lei*, S. Li, H. Huang, K. Tao and P. Xu, Ultra-broadband absorber from visible to near-infrared using plasmonic metamaterial, Optics Express, 26(5), 5686~5693 (2018) 7)L. Wu, Q. Shen, S. Yang, L. Lei* and Ping Xu, "Plasmonic metamaterial ultra-broadband absorber from visible to near-infrared," The International Photonics and Optoelectronics Meeting (POEM 2018), OSA, OEDI-OT4A.14, 31 October–3 November, Wuhan, China, 2018. 8)L. Lei*, Jeonghyun Huh, Luis Romero Cortés, Reza Maram, Benjamin Wetzel, David Duchesne, Roberto Morandotti, and José Aza?a, Observation of spectral self-imaging by nonlinear paraboliccross-phase modulation, Optics Letters, 40(22), 5403-5406 (2015). 9)M. R. Ruiz, L. Lei, M. Rochette, and J. Aza?a, All-optical wavelength conversion based on time domain holography, Optics Express, 23(17), 22847-22856 (2015). 10)L. Lei, J. Dong, B. Zou, Z. Wu, W. Dong, and X. Zhang*, Expanded all-optical programmable logic array based on multi-input/output canonical logic units, Optics Express, 22(8),9959-9970 (2014). 11)Z. Wu, L. Lei, J. Dong, and X. Zhang*, “Triangular-shaped pulse generation based on self-convolution of a rectangular-shaped pulse”, Optics Letters, 39(8), 2258-2261 (2014). 12)Z. Wu, L. Lei, J. Dong, and X. Zhang*, Reconfigurable Temporal Fourier Transformation and Temporal Imaging, IEEE Journal of Lightwave Technology, 32(13), 3963-3968 (2014). 13)L. Lei, F. Da Ros, J. Xu, C. Peucheret, J. Dong and X. Zhang*, All-optical three-input logic minterms generation using semiconductor optical amplifier-based Sagnac interferometer, Electronics Letters, 49(23), 1467–1468 (2013). 14)L. Lei, J. Dong, Y. Yu, S. S Tan and X.L. Zhang*,All-Optical Canonical Logic Units-Based Programmable Logic Array (CLUs-PLA) Using Semiconductor Optical Amplifiers, IEEE Journal of Lightwave Technology, 30(22), 3532-3539 (2012). 15)L. Lei, J. Dong, Y. Zhang, H. He, Y. Yu and X.L. Zhang*, Reconfigurable photonic full-adder and full-subtractor based on 3-input XOR gate and logic minterms, Electronics Letters, 48 (7)(2012). 16)L. Lei, J. J. Dong, Y. Zhang, Y. Yu, and X.L. Zhang*,40-Gb/s all-optical digital 4-bit priority encoder employing cross-gain modulation in semiconductor optical amplifiers, Chinese Science Bulletin, 57(10), 1204–1208 (2012). 17)L. Lei, Y. Zhang, J. J. Dong, Y. Yu, and X.L. Zhang*, 40-Gb/s 16-ary All-Optical Logic Minterms Generation for Four-Line Inputs, IEEE Photonics Technology Letters, 23(18), 1322–1324 (2011).




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