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谢微

教授、博士生导师

精密光谱科学与技术国家重点实验室      

个人资料

  • 部门: 精密光谱科学与技术国家重点实验室
  • 毕业院校: 复旦大学
  • 学位: 博士
  • 学历: 研究生
  • 邮编: 200241
  • 联系电话:
  • 传真:
  • 电子邮箱: wxie@phy.ecnu.edu.cn
  • 办公地址: 光学大楼B413
  • 通讯地址: 上海闵行区东川路500号光学大楼

教育经历

      2007.09.—2012.07     复旦大学     物理系光学专业   硕士&博士

      2002.09.—2006.07     上海大学     物理系光电子专业      学士

工作经历

2015.09.—至今     5357cc拉斯维加斯   精密光谱实验室   紫江学者


2014.05.—2015.08  美国密西根州立大学大学          博士后


2012.07.—2014.05  复旦大学       物理系           助理研究员

 


个人简介

主要从事微纳光学和量子调控领域的实验研究工作,研究方向包括微纳光学结构集体量子行为及调控技术、超快光学编码和光子集成芯片、低维和表界面体系的光谱及超快时间动力学等。近年来以通讯作者/第一作者在 Phys. Rev. Lett.. PNAS  Nat. Commun、  Light Sci. Appl.  Optica  Laser Photonics Rev.  等国际一流学术刊物发表SCI论文40余篇。主持和参与多项国家自然科学基金和科技部科研项目。

社会兼职

研究方向

从事微纳结构光学性质及光子集成芯片方向的实验研究工作

    

    利用微纳结构与低维材料获得新颖、可控的光学效应是当今物理研究和科技应用的热门领域之一。实验上我们利用微纳加工及微区自组装技术,制备高质量微结构样品和光电器件原型。结合已搭建的多维度光学探测平台(角度分辨荧光光谱、发光动力学测量、光斑形状调控-微区探测、低温-磁场-电场等外场环境辅助等),研究半导体光学微腔和微纳周期结构中光-物质作用和宏观量子行为的相干调控;我们将量子调控与微纳光子学、量子光学与量子材料相融合,开拓基于相干操控的元激发粒子-微纳光子混合体系及相关量子器件的新方向,开发其在光电集成微芯片等方面的潜在应用。



方向1:微纳光学结构中的多体量子行为及调控技术



量子点超晶格中的腔增强超荧光效应:融合传统激光和超辐射效应,在微纳尺度首次实现腔增强超荧光集体辐射。将量子点团簇中激子系综的辐射速率提高三个数量级。[Nat. Commun., 11, 329 (2020).  https://www.nature.com/articles/s41467-019-14078-1.]



方向2:超快光信息编码和光子集成芯片


单个纳米球演示太赫兹高带宽光学编码:基于单个钙钛矿纳米球光学激射实现的参量关联超快编码,可调带宽高达0.2 THz。将钙钛矿的应用领域从光学储能材料拓展到信息编码器件

[Laser & Photonics Reviews, 1900398 (2020). https://doi.org/10.1002/lpor.201900398

  Light: Science & Applications, 10: 60 (2021). https://doi.org/10.1038/s41377-021-00508-7.]



方向3:半导体微纳结构多维光谱及超快时间动力学

半导体量子阱准费米面处的光-物质集体相干行为及其动力学演化:半导体光学领域相干凝聚的存在范围首次拓展电子-空穴等离子体相。揭示等离子体凝聚团间的关联机理,发展动态相位调控技术。

[Phys. Rev. Lett., 124, 157402 (2020)https://doi.org/10.1103/PhysRevLett.124.157402.

  Optica, vol.3, no.12, (2016)https://doi.org/10.1364/OPTICA.3.001477.]




学生招生及毕业去向    

    

    课题组常年招收多名硕士、博士、博士后,欢迎有志于微纳光物理探索和光子集成芯片开发的盟友们加入!

 

    本课题组在读博士生名、硕士生毕业博士生2名(就业于山西省中北大学大学杭州市高研院)、硕士生4名(就业于5357cc拉斯维加斯、西安第七中学苏州教育文体委等单位)。



招生与培养

开授课程

《半导体光谱和光学性质》、《量子测量原理与技术》、《物理实验(一)》、《力学》

科研项目

主持国家自然科学基金面上项目、国家自然科学基金青年项目。参与多项国家科技部科研项目。

学术成果


代表性科研成果:


“Angularly Dispersed Vector Vortex Laser Generated by Exciton-Polariton Condensate in a Perovskite Microplatelet”, Liang, Shuang; Mao, Wangqi; Zhou, Weihang; Sun, Wei; Wu, Yanyan; Wei Xie*; Xu, Hongxing; Dong, Hongxing.  Acs Nano, 2025, 19(11): 10854-10861


Collective Excitonic Assembly in Perovskite Superlattice”,  Jiqing Tan, Di Sun, Chun Zhou, Xinjie Li, Yichi Zhong, Qiangqiang Wang, Danqun Mao,  Long Zhang, Hongxing Dong,* Zheng Sun,* Wei Xie,* and Hongxing Xu.  Laser & Photonics Reviews, 2025, 202401847


“Simulation of temporal second-order correlation function based on Monte Carlo algorithm” Hu, Yongsheng; Ma, Tengfei; Mao, Danqun; Wang, Zhenyu; Zhou, Weihang; Xu, Hongxing; Dong, Hongxing; Wei Xie*.  Frontiers of Physics, 2025, 20(3)

 

“Observation of transition from superfluorescence to polariton condensation in CsPbBr3 quantum dots film”  Danqun Mao; Linqi Chen; Zheng Sun*; Min Zhang; Zhe-Yu Shi; Yongsheng Hu; Long Zhang; Jian Wu; Hongxing Dong*; Wei Xie*; Hongxing Xu.  Light: Science & Applications, 2024, 13(1)

 

“Cavity‐Enhanced Superfluorescence Stimulates Coherent Energy Transfer in a Perovskite Quantum Dot Superlattice” Yongsheng Hu; Danqun Mao; Linqi Chen; Yuanjun Guan; Long Zhang; Hongxing Dong*; Hongxing Xu; Wei Xie*; Zheng Sun*.  Laser & Photonics Reviews, 2024, 202400650

 

“High-efficiency nano-integrated input/output based on shallow-etched lithium niobate gratings”  Ma, Tengfei; Liu, Siqi; Qu, Minni; Wei Xie*; Xu, Hongxing.  Optics and Lasers in Engineering, 2024, 178

 

“Energy-saving High-bandwidth Perovskite Sub-micro-encoder” Shuang Liang; Yichi Zhong; Bing Tang; Qiangqiang Wang; Yongsheng Hu; Zhenyu Wang; Long Zhang; Hongxing Dong*; Wei Xie*; Hongxing Xu.  Advanced Optical Materials, 2023, 11(17)

 

“Perturbation-driven echo-like superfluorescence in perovskite superlattices” Wang Qiangqiang; Tan Jiqing; Jie Qi; Dong Hongxing*; Hu Yongsheng; Zhou Chun; Zhang Saifeng; Zhong Yichi; Liang Shuang; Zhang Long; Wei Xie*; Xu Hongxing.  Advanced Photonics, 2023, 5(5)

 

“Stable and Ultrafast Blue Cavity‐Enhanced Superfluorescence in Mixed Halide Perovskites” Linqi Chen; Danqun Mao; Yingjie Hu; Hongxing Dong*; Yichi Zhong; Wei Xie*; Nanli Mou; Xinjie Li; Long Zhang*.  Advanced Science, 2023, 202301589

 

 “Ultrafast Optical Properties of Cavity‐Enhanced Superfluorescence, Yichi Zhong; Chun Zhou; Luyang Hou; Jingzhou Li; Wei Xie*; Hongxing Dong*; Long Zhang*,  Advanced Optical Materials, 2022, 10(7): 2102290. 

 

“Ultrastable low-cost colloidal quantum dot microlasers of operative temperature up to 450 K”, Hao Chang, Yichi Zhong, Hongxing Dong*, Zhenyu Wang, Wei Xie*, Anlian Pan, Long Zhang*,  Light: Science & Applications, 10: 60 (2021)


 “Room-temperature Macroscopic Coherence of Two Electron-hole Plasmas in a Microcavity”, Qi Jie, Keye Zhang, Chih-Wei Lai, Feng-Kuo Hsu, Weiping Zhang*, Song Luo, Yi-Shan Lee, Sheng-Di Lin, Zhanghai Chen and Wei Xie*Phys. Rev. Lett., 124, 157402 (2020)https://doi.org/10.1103/PhysRevLett.124.157402


 “Cooperative excitonic quantum ensemble in perovskite-assembly superlattice microcavities”, Chun Zhou+, Yichi Zhong+, Hongxing Dong*, Weihao Zheng, Jiqing Tan, Qi Jie, Anlian Pan, Long Zhang* and Wei Xie*, Nat. Commun., 11, 329, (2020). https://www.nature.com/articles/s41467-019-14078-1


 “All-Photonic Miniature Perovskite Encoder with a Terahertz Bandwidth”, Yichi Zhong; Bing Tang; Meng Fei; Qi Jie; Jiqing Tan; Qiangqiang Wang; Shuang Liang; Junjie Du; Long Zhang; Hongxing Dong* and Wei Xie*, Laser & Photonics Reviews, 1900398, (2020). https://doi.org/10.1002/lpor.201900398


 “Linearly polarized lasing based on coupled perovskite microspheres”, Beier Zhou+, Yichi Zhong+, Mingming Jiang, Jianhao Zhang, Hongxing Dong*, Linqi Chen, Hao Wu, Wei Xie* and Long Zhang*, Nanoscale, 12, 5805 (2020). https://doi.org/10.1039/C9NR09259E


“Highly linear polarized photoluminescence from a rippled WSe2 monolayer”, Bilin Li, Zhongqi Ren, Ni Zhong, and Wei Xie*Optics Express, vol.27, no.9, (2019)


“Multiple-pulse microcavity lasing from an optically induced confinement”,  Wei Xie, Feng-Kuo Hsu, Yi-Shan Lee, Sheng-Di Lin, ChihWei Lai*, Optica, vol.3, no.12, (2016)


“Weak lasing in one-dimensional polariton superlattices”, Long Zhang+, Wei Xie+, Xuechu Shen, Zhanghai Chen*, et al., Proceedings of the National Academy of Sciences (PNAS), vol.112, no.13, (2015) 


“Room-temperature polariton parametric scattering driven by a one-dimensional polariton condensate”, Wei Xie, Hongxing Dong, Xuechu Shen, Zhanghai Chen*, et al., Phys. Rev. Lett., 108, 166401 (2012)


 “Exciton-polariton condensate induced by evaporative cooling in a three-dimensionally confined microcavity”, Jian Wang, Wei Xie*, Xuechu Shen, Zhanghai Chen*, et al., Phys. Rev. B, vol.91, 165423 (2015)


 “Room-temperature polariton waveguide effect in a ZnO microwire”, Yanjing Ling, Wei Xie*, Zhanghai Chen*, et al., Appl. Phys. Express, 8 031102 (2015)


“Linearly Polarized Remote-Edge Luminescence in GaSe Nanoslabs”, Yanhao Tang, Wei Xie, John A. McGuire, and C. W. Lai *, Phys. Rev. Applied, 4, 034008 (2015)


 “Ultrafast spin-polarized lasing in a highly photoexcited semiconductor microcavity at room temperature”, Feng-Kuo Hsu, Wei Xie, Yi-Shan Lee, Sheng-Di Lin, ChihWei Lai*., Phys. Rev. B, 91, 195312 (2015)


 “Optical and spin polarization dynamics in GaSe nanoslabs”, Yanhao Tang, Wei Xie, Krishna C. Mandal, John A. McGuire, and C. W. Lai *, Phys. Rev. B, 91, 195429 (2015)


 “Coherent scattering of exciton polaritons and acoustic phonons in a ZnO single crystal”, Wenhui Liu, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Phys. Rev. B, 89, 201201(R) (2014)


 “Transient dual-energy lasing in a semiconductor microcavity”, Feng-Kuo Hsu, Wei Xie, Yi-Shan Lee, Sheng-Di Lin, ChihWei Lai*, Sci. Rep. 5, 15347 (2015)


 “Robust exciton-polariton effect in a ZnO whispering gallery microcavity at high temperature”, Saifeng Zhang, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Appl. Phys. Lett., 100, 101912 (2012)


“Angle-Dependent Resonant Light Absorption of Polariton States in One-Dimensional ZnO Microcavities”, Wenhui Liu, Dan Xu, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Appl. Phys. Express, 6, 091101 (2013)


 “Strong bound exciton-photon coupling in ZnO whispering gallery microcavity”, Liaoxin Sun, Hongxin Dong, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Optics Express, 21, 030227 (2013)


 “Spin-Resolved Purcell Effect in a Quantum Dot Microcavity System”, Ren, QJ, Lu, J, Tan, HH, Wu, S, Sun, LX, Zhou, WH, Wei Xie, Zhanghai Chen*, et al., Nano Letters, 12, 3008083 (2012)


 “Indium oxide octahedra optical microcavities”, Hongxin Dong, Liaoxin Sun, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Appl. Phys. Lett., 97, 223114 (2010)


 “Polariton lasing of quasi-whispering gallery modes in a ZnO microwire”, Duan, Qingqing; Xu, Dan; Liu, Wenhui; Lu, Jian; Zhang, Long; Wang, Jian; Wang, Yinglei; Gu, Jie; Hu, Tao; Xie, Wei; Shen, Xuechu; Chen, Zhanghai, Appl. Phys. Lett., 103, 2, (2013)


 “One-dimensional ZnO exciton polaritons with negligible thermal broadening at room temperature”, Trichet, A.; Sun, L.; Pavlovic, G.; Gippius, N. A.; Malpuech, G.; Xie, W.; Chen, Z.; Richard, M.; Dang, Le Si, Phys. Rev. B, 83, 4 (2011)


 “Single-crystalline polyhedral In2O3 vertical Fabry-Perot resonators”, Dong, Hongxing; Sun, Shulin; Sun, Liaoxin; Xie, Wei; Zhou, Lei; Shen, Xuechu; Chen, Zhanghai, Appl. Phys. Lett., 98, 1, (2011)


 “Facile Synthesis and Ultraviolet Lasing Properties a ZnO Microtubes”, Dong, Hongxing; Sun, Liaoxin; Xie, Wei; Zhou, Weihang; Shen, Xuechu; Chen, Zhanghai*, J. Phys. Chem. C, 114, 41: 17369~17373, (2010)


 “Quasi-whispering gallery modes of exciton-polaritons in a ZnO microrod”, Liaoxin Sun, Hongxin Dong, Wei Xie, Xuechu Shen, Zhanghai Chen*, et al., Optics Express, 18, 015371 (2010)


荣誉及奖励

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