师资
汪敬博士,南方科技大学深港微电子学院副教授(PI),正高级研究员,电子元器件高级工程师,博士生导师,深圳市车规级固态激光雷达工程研究中心副主任,入选广东省重大人才工程(领军、青拔)和深圳市孔雀计划海外高层次人才。2010年本科毕业于中国科学技术大学,2013年到2014年在美国普渡大学进行联合培养,2015年博士毕业于中国科学院上海微系统与信息技术研究所。2015年到2018年在华为技术有限公司从事面向城域和数据中心传输的单片集成硅光收发芯片的设计工作。2018年至2024年在深圳市速腾聚创科技有限公司(香港主板上市)担任高级别技术专家,负责车规级固态激光雷达芯片、器件和系统。近5年主持工信部人工智能揭榜挂帅项目、科技部国家重点研发计划重点专项课题、深圳市科创委技术攻关重点/基础研究重点项目等10项政府纵向项目或课题,并参与十余项其他项目。申请专利139项,授权79项,在IEEE JLT/OLT/OL/OE/OFC/ECOC等本领域重要期刊和会议上面发表论文20余篇,出版硅光芯片设计领域的英文专著1本,集成电路布局设计著作权7项。他有30余次基于90 nm~130 nm CMOS工艺的硅光流片经验,参与全国最早的8寸硅光工艺平台的建设,是国内较早从事硅光芯片研究和产品化的技术专家之一,在大规模集成硅光芯片和激光雷达系统领域方面取得了多项有影响力的创新成果。曾编写激光雷达标准1项,做邀请报告10余次。他还获得过南山区十大创新工匠、深圳市产业发展与创新人才奖、Springer Thesis Awards、中科院优秀博士学位论文、中国科学院院长奖、博士国家奖学金等荣誉。他是IEEE/中国光学学会/中国光学工程学会的高级会员,卓越行动计划高起点新刊Moore and More (MaM)的青年编委,担任多个期刊的审稿人,以及多个科技部门的评审专家。
招聘信息
汪敬博士课题组常年招聘博士后、科研助理,招收博士生、硕士生、本科实习生,有意应聘者请将简历(格式PDF)发送至以下邮箱,以“招聘岗位_应聘者姓名”为题。
联系方式:wangj8@sustech.edu.cn
教育经历
2015年,中国科学院上海微系统与信息技术研究所,博士学位
2013年-2014年,美国普渡大学,联合培养
2010年,中国科学技术大学,学士学位
工作经历
2024年7月至今,南方科技大学,副教授
2018年7月至2024年6月,深圳市速腾聚创科技有限公司,P9级别专家
2015年7月至2018年7月,世界五百强企业,高级工程师
获得奖项
1. “广东特支计划”科技创新领军人才,2025年
2. 深圳市南山区“十大创新工匠”,2023年
3. 深圳市产业发展与创新人才奖,2023年
4. “广东特支计划”科技创新青年拔尖人才,2019年
5. 世界五百强企业网络产品线金网络奖,7次,2015年到2018年
6. Springer Thesis Awards, 施普林格国际优秀博士论文奖,2018年
7. 深圳市海外高层次人才计划“孔雀计划”,2015年
8. 深圳市龙岗区“深龙英才”,2017年
9. 中国科学院优秀博士论文奖,2016年
10. 中国科学院院长奖,2014年
11. 博士研究生国家奖学金,2014年
12. 中科院上海微系统所所长奖学金,2015年
13. 中科院三好学生,2013年/2014年
14. 中国科学院优秀学生干部,2013年
15. 上海市科技系统优秀团干部,2013年
研究方向
1、 器件机理:基于CMOS异质集成平台的高性能硅光器件单元机理研究和器件设计
2、 芯片设计:面向激光雷达、车载光通信和量子计算等应用的大规模多功能光电集成芯片设计
3、 系统验证:下一代四维感知激光雷达系统、硅光车载环形通信网络的应用验证
代表性成果
1、专著
[B1] J. Wang, CMOS-Compatible Key Engineering Devices for High-Speed Silicon-Based Optical Interconnections, Springer, 2019, ISBN 978-981-13-3377-4(Hardcover), ISBN 978-981-13-3378-1(Online)
2、期刊论文
[J1] N. Zhang, T. Song, and J. Wang*, “Polarization-Diversity Single-Layer Silicon Optical Switch with Series Phase Shifters,” Journal of Lightwave Technology, vol. 44, no. 11, pp. 4593-4599, 2026.
[J2] J. Wang*, L. Zhu, B. Niu, Y. Zuo, D. Zhou, R. Zhu, H. Xu, H. Wang, W. Zhu, X. Jiang, Q. Liu, and D. Zhang, “Enhanced Three-Channel Dual-Polarization Silicon Photonic Coherent Receiver for Long-Range FMCW Laser Ranging Systems,” Optics and Laser Technology, vol. 182, 112131, 2025.
[J3] J. Wang*, J. Liao, L. Zhu, P. Dong, X. Jiang, H. Wang, and Q. Liu, "Silicon Photonic FMCW LiDAR Calibration Engine with Optimized On-Chip Delay Lines," Journal of Lightwave Technology, vol. 43, no. 15, pp. 7016-7022, 2025.
[J4] J. Wang*, L. Zhu, Y. Zuo, D. Zhou, R. Zhu, H. Xu, H. Wang, X. Jiang, Z. Yue, D. Pan, Q. Liu, and D. Zhang, “Integrated multi-functional silicon photonic engine for long-range FMCW laser ranging,” Moore and More, vol. 2, no. 1, p.12, 2025.
[J5] J. Wang*, L. Zhu, B. Niu, “Integrated nonlinearity calibration optical-electrical engine for FMCW LiDAR application,”Optics Letters, vol. 48, no. 23, pp. 6100-6103, 2023.
[J6] J. Wang, Y. Xuan, M. Qi, H. Huang, Y. Li, M. Li, X. Chen, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, and F. Gan, “Broadband and fabrication-tolerant on-chip scalable mode-division multiplexing based on mode-evolution counter-tapered couplers,” Optics Letters, vol. 40, no. 9, pp. 1956-1959, 2015.
[J7] J. Wang, C. Lee, B. Niu, H. Huang, Y. Li, M. Li, X. Chen, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, F. Gan, and M. Qi, "A silicon-on-insulator polarization diversity scheme in the mid-infrared," Optics Express, vol. 23, no. 11, pp. 15029-15037, 2015.
[J8] J. Wang, M. Qi, Y. Xuan, H. Huang, Y. Li, M. Li, X. Chen, Q. Jia, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, and F. Gan, "Ultra-broadband silicon-on-insulator polarization beam splitter based on cascaded mode-sorting asymmetric Y-junctions," IEEE Photonics Journal, vol. 6, no. 6, pp. 2700608, 2014.
[J9] J. Wang, M. Qi, Y. Xuan, H. Huang, Y. Li, M. Li, X. Chen, Q. Jia, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, and F. Gan, "Proposal for fabrication-tolerant SOI polarization splitter-rotator based on cascaded MMI couplers and an assisted bi-level taper," Optics Express, vol. 22, no. 23, pp. 27869-27879, 2014.
[J10] J. Wang, B. Niu, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, M. Qi, and F. Gan, "Novel ultra-broadband polarization splitter-rotator based on mode-evolution tapers and a mode-sorting asymmetric Y-junction," Optics Express vol. 22, no. 11, pp. 13565-13571, 2014.
[J11] J. Wang, B. Niu, Z. Sheng, A. Wu, X. Wang, S. Zou, M. Qi, and F. Gan, "Design of a SiO2 top-cladding and compact polarization splitter-rotator based on a rib directional coupler," Optics Express, vol. 22, no. 4, pp. 4137-4143, 2014.
[J12] J. Wang, Z. Sheng, L. Li, A. Pang, A. Wu, W. Li, X. Wang, S. Zou, M. Qi, and F. Gan, "Low-loss and low-crosstalk 8×8 silicon nanowire AWG routers fabricated with CMOS technology," Optics Express, vol. 22, no. 8, pp. 9395-9403, 2014.
[J13] J. Wang, C. Qiu, H. Li, W. Ling, L. Li, A. Pang, Z. Sheng, A. Wu, X. Wang, S. Zou, and F. Gan, "Optimization and Demonstration of a Large-bandwidth Carrier-depletion Silicon Optical Modulator," Journal of Lightwave Technology, vol. 31, no. 24, pp. 4119-4125, 2013.
3、会议论文
[C1] N. Zhang, T. Song, and J. Wang*, Single-layer Polarization-insensitive Silicon Optical Switch based on Series Phase Shifter, in Asia Communications and Photonics (ACP) Conference 2025, November 5-8, 2025.
[C2] T. Song, N. Zhang, and J. Wang*, High-delay-density and Low-loss Silicon Optical Delay Line Using Waveguide Superlattice, in Asia Communications and Photonics (ACP) Conference 2025, November 5-8, 2025.
[C3] X. Lai, L. Zhang, Z. Li, Y. Yan, C. Yu, J. Wang, L. Sun, G. N. Liu, “FPGA-GPU Heterogeneous Platform Based Intra-Vehicle Optical Networks”, in 2025 IEEE 11th World Forum on Internet of Things (WF-IoT), 2025.
[C4] J. Wang*, S. Deng, C. Wong, Y. Wen, W. Wei, T. Wang, G. N. Liu, E. Zhou and L. Liu, “Monolithically Integrated Silicon Hybrid Demultiplexer with Improved Loss and Crosstalk Suppression” in 42nd European Conference on Optical Communication (ECOC), 2017.
[C5] J. Wang*, S. Deng, C. Wong, Y. Wen, W. Wei, T. Wang, G. N. Liu, E. Zhou and L. Liu, “Optimized 32-channel silicon hybrid demultiplexer fabricated with CMOS technology, ” in IEEE 14th International Conference on Group IV Photonics (GFP), 2017.
[C6] J. Wang*, Y. Xuan, M. Qi, L. Liu, and G. N. Liu, "Ultra-broadband Integrated Four-Channel Mode-Division-Multiplexing Based on Tapered Mode-Evolution Couplers," in 41nd European Conference on Optical Communication (ECOC), pp. 1-3, 2016.
[C7] J. Wang*, Y. Xuan, M. Qi, L. Liu, and G. N. Liu, "Comparison and analysis on single-layer Si fiber-to-chip edge couplers with different taper tips," in 13th IEEE International Conference on Group IV Photonics (GFP), pp. 44-45, 2016.
[C8] J. Wang*, Y. Xuan, C. Lee, B. Niu, L. Liu, G. N. Liu, and M. Qi, "Low-loss and misalignment-tolerant fiber-to-chip edge coupler based on double-tip inverse tapers," in Optical Fiber Communication Conference(Optical Society of America, Anaheim, California), p. M2I.6, 2016.
[C9] J. Wang, B. Niu, H. Huang, Y. Li, M. Li, Z. Sheng, A. Wu, W. Li, X. Wang, S. Zou, M. Qi, and F. Gan, "A fabrication-tolerant SOI polarization splitter-rotator with cascaded MMI couplers and an assisted bi-level taper," in Asia Communications and Photonics (ACP) Conference 2014, OSA Technical Digest (online) (Optical Society of America, 2014), paper ATh3A.9, Shanghai, China, November 11-14, 2014.
[C10] J. Wang, Z. Sheng, L. Li, A. Pang, A. Wu, W. Li, X. Wang, S. Zou, M. Qi and F. Gan, "Improved performance in Si nanowire AWG routers based on a comparative study of optimization techniques," in 11th IEEE International Conference on Group IV Photonics (GFP), paper WP22, Paris, France, August 27-29, 2014.
[C11] J. Wang, C. Qiu, H. Li, L. Li, A. Pang, Z. Sheng, A. Wu, X. Wang, S. Zou, and F. Gan, "High-speed Silicon Mach-Zehnder Modulator Operating Beyond 40 Gb/s," in Asia Communications and Photonics (ACP) Conference 2012, OSA Technical Digest (online) (Optical Society of America, 2012), paper ATh2B.3, Guangzhou, China, November 7-10, 2012.
4、发明专利(申请专利139项,授权79项,只列出代表性10项)
[P1] 汪敬、甘甫烷、盛振、武爱民、仇超、王曦、邹世昌,硅基光调制器,申请号:201410621547.3
[P2] WANG Jing, LIU Ning, OPTICAL ADD/DROP MULTIPLEXER, CONTROL METHOD THEREFOR, AND TRANSCEIVER, 申请号:PCT/CN16090994,专利号:US10484122B2
[P3] WANG Jing, LIU Ning, OPTICAL ADD/DROP MULTIPLEXER, CONTROL METHOD THEREFOR, AND TRANSCEIVER, 申请号:PCT/CN16090994,专利号:EP3480980B1
[P4] 汪敬,光学相控阵及其相位误差改善方法、激光雷达、智能设备,申请号:201980002797.X
[P5] 汪敬,应用于光学相控阵的天线阵列、光学相控阵及激光雷达,申请号:201980002799.9
[P6] 汪敬、任亚林、牛犇、朱琳,相控阵发射装置、激光雷达和自动驾驶设备,申请号:201980002788.0
[P7] 汪敬、朱琳、邱纯鑫、刘乐天,光收发模组、激光雷达、自动驾驶系统及可移动设备,申请号:2022112192083
[P8] 汪敬、朱琳、邱纯鑫、刘乐天,波导转换芯片、调频连续波激光雷达及自动驾驶设备,申请号:2022116005601
[P9] 汪敬、邱纯鑫、刘乐天,调频连续波激光雷达及自动驾驶设备,申请号:2022115996791
[P10] 汪敬,光芯片及激光雷达,申请号:2023105117909
5、主持的科研项目(PI)
[1] 广东特支计划科技创新领军人才项目,2025-2028
[2] 某重点实验室开放课题,2026-2027
[3] 深圳市基础研究重点项目, 2024-2027
[4] 深圳市协同创新专项课题,2024-2027
[5] 科技部国家重点研发计划智能传感器重点专项课题,2021-2024
[6] 工信部人工智能产业创新任务揭榜挂帅项目,2021-2023
[7] 深圳市创新创业计划技术攻关重点项目,2023-2025
[8] 南山区技术攻关联合支持计划, 2023-2023
[9] 深圳市协同创新科技计划,2021-2023
[10] 广东特支计划科技创新青年拔尖人才项目,2020-2023
6、主要承担的科研项目
[1] 深圳市发展和改革委员会战略性新兴产业扶持计划,2023-2026
[2] 工信部产业基础再造和制造业高质量发展专项,2022-2025
[3] 广东省科学技术厅重点研发计划,2019-2021
[4] 国家发改委“互联网+”和数字经济专项,2019-2020
[5] 863子课题,2015-2017
[6] 上海市科委基础研究重大项目课题,2014-2017
[7] 装备预研基金重点项目,2013-2014
[8] 863子课题,2012-2014
[9] 中国科学院知识创新工程重要方向项目,2010-2012
[10] 上海市科委基础研究重大项目课题,2010-2013
