曾星琳 博士生导师
中国科学院上海光学精密机械研究所
电子邮件: zengxinglin@siom.ac.cn
通信地址: 上海市嘉定区清河路390号上海光机所3号楼
邮政编码: 201800
罗素中心—先进微结构光纤与光声调控研究组
题组研究领域:空芯光纤,非线性光纤光学,布里渊声光交互,光学囚禁,多维光子学
研究目标:面向新一代信息容量与激光功率超限光纤、声光计算与量子信息网络等国家重大需求和多维非线性光子学基础前沿,研究组致力于发展微结构光纤(空芯光纤、实芯光子晶体光纤等)中的多维布里渊散射、光声耦合与光力调控新理论、新技术,探索光场、声场及其自旋、轨道角动量、空间模式、偏振和频率等多自由度之间的相互作用机制,研发面向大容量光通信、高功率激光、智能光计算、光声存储与高灵敏传感的新型微结构光纤、光声功能器件与系统。
研究方向一:超低损、低噪声空芯光纤的研制
研究方向二:微结构光纤光声调控与多维信息处理
研究方向三:空芯光纤分布式测量技术与系统研究
研究方向四:长距离光力捕获技术
曾星琳,中国科学院上海光机所副研究员,博士生导师,先进微结构光纤与光声调控研究组负责人,长期致力于微结构光纤(包括空芯光纤,少模光纤,光子晶体光纤等)研发,非线性光纤光学,光声调控和光学囚禁等基础与应用研究。在Science Advances等国际著名期刊发表论文近20篇,发表国际会议论文21篇(其中包含CLEO-US, FiO/LS等五篇Post-deadline论文)。同时,申请人还受邀在国际会议作特邀报告10余次,其中包括在光通信领域顶级会议ECOC-2022上作特邀报告。因开创性的将光纤布里渊散射效应从一维拓展到多维,申请人获得美国光学学会Tingye Li创新奖。目前申请人作为项目负责人正承担了德国科学基金会DFG研究项目1项,国家省部级项目1项。申请人曾担任欧洲物理学会马普光学所分会青年主席以及由Light: Science & Application期刊主办的Light Conference技术委员会委员等。

招生信息
课题组长期招收光学工程,物理电子学,电子科学与技术等相关方向的本科实习生,硕士/博士,博士后。欢迎对光纤光子学、激光物理、光场调控和信号处理等方向感兴趣的优秀学生报考,有光纤,光场调控等相关研究背景的同学优先。课题组研究氛围浓厚,师生关系紧密,导师对每个学生课题都亲自指导,一对一交流。课题组还为学生积极提供出国交流、国际会议等发展机会。
课题组目前也正在和罗素中心学术主任菲利普罗素(Philip Russell)院士深度合作开展空芯光纤基础研究,团队成员有机会接受罗素院士亲自指导,做出世界一流的科研成果。
欢迎光学基础扎实,有理想,有抱负、愿意投身科研事业的同学!
联系方式,邮件 (zengxinglin@siom.ac.cn) 或微信 (cquptzxl)
具体招生信息及研究内容请参考罗素中心官网: www.r-cals.com
招生专业
教育背景
工作经历
2025-04~现在, 中国科学院上海光学精密机械研究所, 副研究员
2019-12~2025-03,德国马克斯普朗克光科学研究所, 博士后
2018-12~2019-11,香港大学, 博士后
发表论文
- J. Zhao, R. Yin, J. Xu, W. He, J. Huang, Z. Huang, J. Zhan, X. Jiang, M. Pang, L. Zhang, and X. Zeng*, ACS Photonics 13, 725-732 (2026). 通讯作者
- X. Zeng* and B. Stiller, Brillouin-enhanced four-wave mixing with optical chiral states, APL Photonics. 10, 076119 (2025). 一作通讯
- X. Zeng*, P. St.J. Russell, and B. Stiller, Frequency conversion of vortex states by chiral flexural acoustic phonons,” Photon. Res. 13, 1997-2012 (2025). 一作通讯
- X. Zeng*, P. St.J. Russell, C. Wolff, M. H. Frosz, G. K. L. Wong and B. Stiller, “Nonreciprocal vortex isolator via topology-selective stimulated Brillouin scattering,” Science Advances 8, eabq6064 (2022). 一作通讯
- X. Zeng*, P. St.J. Russell, Y. Chen, Z. Wang, G. K. L. Wong, P. Roth, M. H Frosz and B. Stiller, “Optical vortex Brillouin laser,” Laser & Photonics Rev. 17, 2200277 (2023). 一作通讯
- X. Zeng*, W. He, M. H. Frosz, A. Geilen, P. Roth, G. K. L. Wong, P. St.J. Russell and B. Stiller, “Stimulated Brillouin scattering in chiral photonic crystal fiber,” Photon. Res. 10, 711-718 (2022). 一作通讯
- X. Zeng*, Y. Ren, L. Zhou, C. Kong, H. Mao, C. Qiu, K. K Tsia, K. KY Wong, “Photonic nanojet mediated backaction of dielectric microparticles,” ACS Photonics 7, 1483 (2020). 一作通讯
- X. Zeng*, Y. Li, L. Feng, S. Wu, C. Yang, W. Li, W. Tong and J. Wu, “All-fiber orbital angular momentum mode multiplexer based on a mode-selective photonic lantern and a mode polarization controller,” Opt. Lett. 43, 4779 (2018). 第一作者
- X. Zeng*, Y. Li, Q. Mo, W. Li, Y. Tian, Z. Liu and J. Wu, “Experimental Investigation of LP11 Mode to OAM Conversion in Few Mode-Polarization Maintaining Fiber and the Usage for All Fiber OAM Generator,” IEEE Photonics Journal 8, 4(2016). 第一作者
- X. Zeng*, Y. Li, W. Li, L. Zhang and J. Wu, “All-fiber broadband degenerate mode rotator for mode-division multiplexing systems,” IEEE Photonics Technology Letters 28, 1383 (2016). 第一作者
- X. Hong, X. Zeng, Y. Li, Q. Mo, Y. Tian, W. Li, Z. Liu and J. Wu, “Tunable mode rotator for space-division multiplexing based on a few mode-polarization maintaining fiber,” Appl. Opt. 55, 9360 (2016).
- Y. Ren, C. Kong, H. He, X. Zeng, K. K. Tsia and K. K. Y. Wong, “Encrypted wide-field two-photon microscopy with single-pixel detection and compressed sensing,” Applied Physics Express 13, 032007 (2020).
- L. Feng, Y. Li, S. Wu, X. Zeng, W. Li, J. Qiu, Y. Zuo, X. Hong, H. Guo, H. Yu and J. Wu, "Generation of LP11/LP21 modes with tunable mode lobe orientation controlled by polarization states," Opt. Express 27, 13150 (2019).
- S. Wu, Y. Li, L. Feng, X. Zeng, W. Li, J. Qiu, Y. Zuo, X. Hong, H. Yu, R. Chen, I. P. Giles and J. Wu, “Continuously tunable orbital angular momentum generation controlled by input linear polarization,” Opt. Lett. 43, 2130 (2018).
邀请报告
- Twisted light-sound interaction in chiral photonic crystal fibre, Photonics West, 2026
- Multidimensional optomechanics in micro-structured optical fibers, IEEE Photonics conference (IPC), 2026
- 微结构光纤中的多维布里渊声光效应, 中国光学十大进展高峰论坛, 2026
- Multidimensional optomechanics in micro-structured optical fibers, CIOP, 2026
- Twisted light-sound interactions, ICOCN, 2026
- When twisted photons meet twisted phonons: advanced Brillouin interaction in chiral photonic crystal fibres and related device development, Light conference, 2026
- Chiral photon-phonon Brillouin interaction: with twisted photonic crystal fiber and beyond, ACP, 2025
- Multi-dimensional light-sound interactions in optical fibers, PGC 2025.
- High-dimensional Brillouin scattering in chiral photonic crystal fibre, SPC, 2025
- High-dimensional Brillouin scattering in chiral photonic crystal fibre, Light Conference, 2025.
- Twisted light-sound interaction in chiral photonic crystal fibre, ISNOG 2024.
- Nonreciprocal vortex conversion and frequency shifting using light-driven chiral flexural waves, CLEO-US, 2023
- Stimulated Brillouin scattering in chiral photonic crystal fiber, ECOC, 2022