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个人简介

教育经历 2005.9∼2008.7 北京师范大学物理学系光学,理学博士 2003.9∼2005.7 北京师范大学物理学系光学,理学硕士 1999.9∼2003.7 北京师范大学物理学系,理学学士 工作经历 2019.8∼至今 任北京师范大学物理学系教授 2014.9∼2019.8 任北京师范大学物理学系副教授 2016.2∼2016.8 台湾国立清华大学访问学者 2011.9∼2013.1 美国University of Texas at Austin 访问学者 2008.8∼2014.9 任北京师范大学物理学系讲师 学术兼职 应用光学北京市重点实验室副主任 中国光学学会全息与光信息处理专业委员会委员 奖励荣誉 2014年北京师范大学优秀青年教师 2013年京师英才奖 2011年江西省自然科学奖一等奖,第三获奖人

研究领域

微纳光学中的光与物质相互作用:超构表面与等离激元 1. 能带调控:共振模式调控,连续域束缚态,非厄米物理,微纳手性光学 2. 非线性光学:微纳结构中的谐波增强与非线性相互作用 3. 基于上述物理原理的器件:微纳激光器,手性与非线性传感器,逻辑器件,增强显示器件,单向光子器件,及微纳光学在生物医学中的应用

近期论文

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Bokun Lyu?, YangLi?, Qianwen Jia, Haojie Li, Guoxia Yang, Fengzhao Cao, Supeng Kou, Dahe Liu,Tun Cao, Guixin Li*, and Jinwei Shi*. Manipulating the chirality of Moirémetasurface by symmetry breaking. Laser& Photonics Review, 2201004 early view (2023). Li, Haojie; Jia,Qianwen; Lyu, Bokun; Cao, Fengzhao; Yang, Guoxia; Liu, Dahe; Shi, Jinwei*. Parity-timesymmetry breaking optical nanocircuit. OpticsExpress 31(9) 14986-14996 (2023). Bokun Lyu?(吕博昆), Haojie Li?(李昊杰), Qianwen Jia?(贾倩文), Guoxia Yang?(杨国霞), Fengzhao Cao?(曹凤朝), Dahe Liu?(刘大禾), and Jinwei Shi?(石锦卫)*. MoiréMetasurface with Triple-Band Near-Perfect Chirality.Chin. Phys. Lett. 40 054202 (2023). Fengzhao Cao, MimiZhou, Chang-Wei Cheng, Haojie Li, Qianwen Jia, Anwen Jiang, Bokun Lyu, DaheLiu, Dezhuan Han, Shangjr Gwo, Jinwei Shi*. Interaction of plasmonic boundstates in the continuum. PhotonicsResearch, 11(5), 724-731 (2023). J Wang, B Lv, DLiu, W Gong, J Shi*. Efficient four-wave mixing based on multipleplasmonic resonance. Optics Letters46 (18), 4522-4525, 2021. Y Ding, C Wei, HSu, S Sun, Z Tang, Z Wang, G Li, D Liu, S Gwo, Junfeng Dai*, JinweiShi*. Second Harmonic Generation Covering the Entire Visible Range from a2D Material–Plasmon Hybrid Metasurface. Advanced Optical Materials 9 (16), 2100625, 2021. 曹凤朝;吕博昆;丁宇峰;石锦卫*, 一维等离激元晶格中的能带结构调控, 人工晶体学报 2021-07-08 Chun-Yuan Wang,Yungang Sang, Xinyue Yang, Soniya S Raja, Chang-Wei Cheng, Haozhi Li, YufengDing, Shuoyan Sun, Hyeyoung Ahn, Chih-Kang Shih*, Shangjr Gwo*, JinweiShi*, Engineering Giant Rabi Splitting via Strong Coupling betweenLocalized and Propagating Plasmon Modes on Metal Surface Lattices: Observationof √N Scaling rule, Nano letters,2021, 21, 1, 605-611 Shuoyan Sun, YufengDing, Haozhi Li, Peng Hu, Chang-Wei Cheng, Yungang Sang, Fengzhao Cao, Yue Hu,Andrea Alù, Dahe Liu, Zhaona Wang, Shangjr Gwo*, Dezhuan Han*, JinweiShi*, Tunable plasmonic boundstates in the continuum in the visiblerange, Physical Review B, 2021, 103, 4, 045416 Yungang Sang,Chun-Yuan Wang, Soniya S Raja, Chang-Wei Cheng, Chiao-Tzu Huang, Chun-An Chen,Xin-Quan Zhang, Hyeyoung Ahn, Chih-Kang Shih, Yi-Hsien Lee, Jinwei Shi, ShangjrGwo*, Tuning of Two-Dimensional Plasmon–Exciton Coupling in Full ParameterSpace: A Polaritonic Non-Hermitian System, Nanoletters, 2021, 21, 6, 2596-2602 Hu Yue, CaoFeng-Zhao, Dong Ren-Jing, Hao Chen-Yue, Liu He, Shi Jin-Wei*, Analysis ofstability catastrophe of confocal cavity, ACTAPHYSICA SINICA (物理学报), 2020, 69,22, 224202 Sun, L.; Wang,C.-Y.; Krasnok, A.; Choi, J.; Shi, J.; Gomez-Diaz, J. S.; Zepeda, A.; Gwo, S.;Shih, C.-K.; Alù*, A.; Li, X.*, Separation of valley excitons in a MoS2monolayer using a subwavelength asymmetric groove array. Nature Photonics 2019, 13 (3), 180-184. Shi, J.; Liang,W.-Y.; Raja, S. S.; Sang, Y.; Zhang, X.-Q.; Chen, C.-A.; Wang, Y.; Yang, X.;Lee, Y.-H.*; Ahn, H*.; Gwo, S*. Plasmonic Enhancement and Manipulation ofOptical Nonlinearity in Monolayer Tungsten Disulfide. Laser & Photonics Reviews 2018, 12 (10). Wang, H.; Ding, Y.;Chen, W.; Liu, Y.; Tang, D.; Cui, G.; Li, W.*; Shi, J.*; Bo, Z.*, BroadbandAbsorption Enhancement in Polymer Solar Cells Using Highly Efficient PlasmonicHeterostructured Nanocrystals. ACS Appl Mater Interfaces 2018, 10 (37). Sang, Y., Wu, X.,Raja, S. S., Wang, C. Y., Li, H., Ding, Y., Liu, D.; Zhou, J.; Ahn, H.; Gwo,Shangjr.*; Shi, J.* Broadband Multifunctional Plasmonic Logic Gates. Advanced Optical Materials 2018,1701368. Ding, Y.; You, Y.;Sang, Y.; Wang, Y.; Zhao, M.;Liang, C.; Lu, C.; Liu, D.; Zhou, J.; Tang, Z.*;Shi, J.*, Broadband Surface Enhanced Photoluminescence Based on Gold NanocubicSelf-assembly. Advanced OpticalMaterials 2017, 1700551. Wang, Y.; Zheng,R.; Ding, Y.; Fan, W.; Liu, D.; Zhou,J.; Shi, J.*, Resolving the bond angle ofa plasmonic metamolecule. Optica2017,4 (9), 1092-1097. Shi, J.; Lin, M.H.; Chen, I. T.; Mohammadi Estakhri, N.;Zhang, X. Q.; Wang, Y.; Chen, H. Y.;Chen, C. A.; Shih, C. K.; Alu, A.; Li, X.*;Lee, Y. H.*; Gwo, S.*, Cascadedexciton energy transfer in a monolayersemiconductor lateral heterostructureassisted by surface plasmon polariton. NatCommun 2017,8 (1), 35. Sun, L.; Ma, T.;Yang, S.-C.; Kim, D.-K.; Lee, G.; Shi, J.; Martinez, I.; Yi, G.-R.; Shvets,G.*; Li, X.*, Interplay Between Optical Bianisotropy and Magnetism in PlasmonicMetamolecules. Nano letters 2016,16 (7), 4322-4328. Hartsfield, T.;Chang, W.-S.; Yang, S.-C.; Ma, T.; Shi, J.; Sun, L.; Shvets, G.*; Link, S.*;Li, X.*, Single quantum dot controls aplasmonic cavity’s scattering andanisotropy. Proceedings of the NationalAcademy of Sciences 2015,112 (40),12288-12292. Fan, W.; Wang, Y.;Zheng, R.; Liu, D.; Shi, J.*, Broadbandhigh efficiency asymmetric transmissionof achiral metamaterials. Optics express 2015,23 (15), 19535-19541. Cui, L.; Shi, J.*;Wang, Y.; Zheng, R.; Chen, X.; Gong,W.; Liu, D.*, Retrieval of contaminatedinformation using random lasers. Applied Physics Letters 2015,106 (20), 201101. Shi, J.; Monticone,F.; Elias, S.; Wu, Y.; Ratchford, D.;Li, X.*; Alu, A.*, Modular assembly ofoptical nanocircuits. Nature communications 2014,5, 3896. Chen, S.; Shi, J.*;Kong, X.; Wang, Z.; Liu, D.*, Cavitycoupling in a random laser formed by ZnOnanoparticles with gain materials. Laser Physics Letters 2013,10 (5), 055006. Zhao, Y.; Shi, J.;Sun, L.; Li, X.; Alù, A., Alignment‐Free Three‐Dimensional OpticalMetamaterials. Advanced Materials 2014,26(9), 1439-1445. Shi, X.; Wang, Y.;Wang, Z.; Wei, S.; Sun, Y.; Liu, D.;Zhou, J.; Zhang, Y.; Shi, J., Random lasingwith a high quality factor over thewhole visible range based on cascade energytransfer. Advanced Optical Materials 2014,2 (1), 88-93. Wang, Y.; Shi, X.;Sun, Y.; Zheng, R.; Wei, S.; Shi, J.;Wang, Z.; Liu, D., Cascade-pumped randomlasers with coherent emission formedby Ag–Au porous nanowires. Optics letters2014,39 (1),5-8. Zhang, L.; Zhang,D.; Shi, J.; Shi, J.; Gong, W.; Liu,D., Investigations on coherence ofstimulated Brillouin scattering excited by asingle-mode-pulsed laser. AppliedPhysics B 2012,109 (1),137-141. Shi, J.; Tang, Y.;Wei, H.; Zhang, L.; Zhang, D.; Shi,J.; Gong, W.; He, X.; Yang, K.; Liu, D.,Temperature dependence of thresholdand gain coefficient of stimulated Brillouinscattering in water. Applied Physics B 2012,108 (4), 717-720. Chen, S.; Zhao, X.;Wang, Y.; Shi, J.; Liu, D., Whitelight emission with red-green-blue lasingaction in a disordered system ofnanoparticles. Applied Physics Letters 2012,101(12),123508. Shi, J.; Chen, X.;Ouyang, M.; Gong, W.; Su, Y.; Liu, D.,Theoretical investigation on the pumpingeffect of stimulated Brillouinscattering on stimulated Raman scattering inwater. Applied Physics B:Lasers and Optics 2012,106 (2), 445-451. Zhang, L.; Zhang,D.; Yang, Z.; Shi, J.; Liu, D.; Gong,W.; Fry, E. S., Experimental investigationon line width compression ofstimulated Brillouin scattering in water. AppliedPhysics Letters 2011,98 (22), 221106. Shi, J.; Wang, Z.;Liu, D.; Gong, W.; Su, Y.,Electromagnetic detection of a perfect cloak based onthe material nonlinear response. Applied Physics B 2011,105 (2), 225. Zhai, T.; Shi, J.;Chen, S.; Liu, D., Electromagneticshielding and energy concentration usingzero-index metamaterials. Applied physics express 2011,4 (7), 074301. Zhai, T.; Shi, J.;Chen, S.; Liu, D.; Zhang, X.,Achieving laser ignition using zero index metamaterials.Optics letters 2011,36 (14), 2689-2691. Zhai, T.; Chen, S.;Zhou, Y.; Shi, J.; Zhang, X.; Liu,D., Beam controller using nonlinear embeddedoptical transformation. Applied Physics B: Lasers and Optics 2011,104 (4),935-939. Shu-Jing, C.; Jin-Wei,S.; Tian-Rui, Z.; Zhao-Na, W.;Da-He, L.; Xiao, C., Wavelength variation of arandom laser with concentrationof a gain material. Chinese Physics Letters2011,28 (10),104204. Zhai, T.; Zhou, Y.;Chen, S.; Wang, Z.; Shi, J.; Liu,D.; Zhang, X., Pulse-duration-dependent andtemperature-tunable random lasingin a weakly scattering structure formed byspeckles. Physical Review A 2010,82 (2), 023824. Zhai, T.; Zhou, Y.;Shi, J.; Wang, Z.; Liu, D.; Zhou,J., Electromagnetic localization based ontransformation optics. Optics express 2010,18 (11), 11891-11897. Yu-Huan, S.;Jin-Wei, S.; Da-He, L.; Guo-Jian, Y.,Detection of Perfect Cloak in Time Domain.Chinese Physics Letters 2010,27 (9), 094102. Yu-Huan, S.;Jin-Wei, S.; Min, O.; Guo-Jian, Y.;Da-He, L., Theoretical Analysis of theCritical Phenomena of a Brillouin Laser. Chinese Physics Letters 2010,27 (7),074203. 陈旭东; 石锦卫; 刘娟; 刘宝; 许艳霞; 史久林; 刘大禾, 同轴正交偏振双脉冲序列受激布里渊散射抽运放大的实现方法. 物理学报 2010, (2),1047-1051. Shi, J.; Ouyang,M.; Chen, X.; Liu, B.; Xu, Y.; Jing,H.; Liu, D., Stimulated Raman scatteringenhanced by stimulated Brillouinscattering. Optics letters 2009,34 (7),977-979. Shi, J.-w.; Chen,X.-d.; Ouyang, M.; Liu, J.; Liu, D.,Theoretical investigation on the thresholdvalue of stimulated Brillouin scattering in terms of laser intensity. AppliedPhysics B 2009,95(4), 657-660. Shi, J.; Chen, X.;Ouyang, M.; Liu, J.; Liu, D.,Amplification of stimulated Brillouin scatteringof two collinear pulsed laser beams with orthogonal polarizations. Appliedoptics 2009,48(17), 3232-3236.

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