发布时间:2021-10-07 编辑:考研派小莉 推荐访问:
浙江大学光电信息工程学系导师:方伟

浙江大学光电信息工程学系导师:方伟的内容如下,更多考研资讯请关注我们考研派网站的更新!敬请收藏本站。或下载我们的考研派APP和考研派微信公众号(里面有非常多的免费考研资源可以领取哦)[浙江大学化学系研究生导师:吴金龙] [浙江大学化学系研究生导师:王国平] [浙江大学化学系研究生导师:聂晶晶] [浙江大学化学系研究生导师:刘占祥] [浙江大学化学系研究生导师:刘润] [浙江大学化学系研究生导师:林峰]

浙江大学学姐微信
为你答疑,送资源

95%的同学还阅读了: [2022浙江大学研究生招生目录] [浙江大学研究生分数线[2013-2021]] [浙江大学王牌专业排名] [浙江大学考研难吗] [浙江大学研究生院] [浙江大学考研群] [浙江大学研究生学费] 浙江大学保研夏令营 浙江大学考研调剂2022最新信息 [浙江大学研究生辅导] [考研国家线[2006-2021]] [2022年考研时间:报名日期和考试时间]

浙江大学光电信息工程学系导师:方伟正文


  姓名:方伟
  性别:男
  所在学院:光电信息工程学系
  职称:副教授

  个人简介
  教育背景:
  2000-2006 美国西北大学(Northwestern University)物理系(博士) 1995-1999 北京大学物理系(本科)
  工作简历:
  2009-至今 浙江大学光电系 2006-2008 美国国家标准技术研究所(NIST)(博士后)

  研究方向:
  1.纳米光子学及量子光学 2.光学微盘激光器、变形微腔和量子混沌 3.基于半导体量子点的腔量子电动力学

  发表论文:
  Jintian Lin, Shangjie Yu, Yaoguang Ma, Wei Fang, Fei He, Lingling Qiao, Limin Tong, Ya Cheng, and Zhizhan Xu, “On-chip three-dimensional high-Q microcavities fabricated by femtosecond laser direct writing,” Opt. Express 20, 10212 (2012)
  Fuxing Gu, Huakang Yu, Wei Fang, Limin Tong, “Low-threshold supercontinuum generation in semiconductor nanoribbons by continuous-wave pumping,” Opt. Express 20, 8667 (2012)
  Q. H. Song, Li Ge, J. Wiersig, J.-B. Shim, J. Unterhinninghofen, A. Eberspächer, W. Fang, G. S. Solomon, and Hui Cao, “Wavelength-scale deformed microdisk lasers,” Phys. Rev. A 84, 063843 (2011)
  Fuxing Gu, Huakang Yu, Wei Fang, and Limin Tong, “Broad spectral response in composition-graded CdSSe single nanowires via waveguiding excitation,” Appl. Phys. Lett. 99, 181111 (2011)
  Fuxing Gu; Lei Zhang; Huakang Yu; Wei Fang; Jiming Bao; Limin Tong, “Large defect-induced sub-bandgap photoresponse in semiconductor nanowires via waveguiding excitation,” Nanotechnology 22, 425201 (2011)
  Huakang Yu, Wei Fang, Fuxing Gu, Min Qiu, Zongyin Yang, and Limin Tong, “Longitudinal Lorentz force on a subwavelength-diameter optical fiber,” Phys. Rev. A 83, 053830 (2011)
  Q. H. Song, L. Ge, A. D. Stone, H. Cao, J. Wiersig, J.-B. Shim, J. Unterhinninghofen, W. Fang, and G. S. Solomon, “Directional Laser Emission from a Wavelength-Scale Chaotic Microcavity,” Phys. Rev. Lett. 105, 103902 (2010)
  J. Fu, H. Dong, and W. Fang, “Subwavelength focusing of light by a tapered microtube,” Appl. Phys. Lett. 97, 041114 (2010)
  P. S. Kuo, W. Fang, and G. S. Solomon, “4-quasi-phase-matched interactions in GaAs microdisk cavities,” Optics Letters 34, 3580 (2009)
  Andress Muller, Wei Fang, John Lawall, and Glenn S. Solomon, “Creating Polarization-Entangled Photon Pairs from a Semiconductor Quantum Dot Using the Optical Stark Effect,” Phys. Rev. Lett. 103, 217402 (2009)
  Qinghai Song, Wei Fang, Boyang Liu, Seng-Tiong Ho, Glenn S. Solomon, and Hui Cao, “Chaotic microcavity laser with high quality factor and unidirectional output,” Phys. Rev. A 80, 041807(R) (2009)
  Shanshan Wang, Zhifang Hu, Huakang Yu, Wei Fang, Min Qiu, and Limin Tong, “Endface reflectivities of optical nanowires”, Optics Express 17, 10881 (2009)
  Andress Muller, Wei Fang, John Lawall, and Glenn S. Solomon, “Emission spectrum of a dressed exciton-biexciton complex in a semiconductor quantum dot,” Phys. Rev. Lett. 101, 027401 (2008)
  W. Fang, and H. Cao, “Wave interference effect on polymer microstadium laser,” Appl. Phys. Lett. 91, 041108 (2007)
  Z. G. Xie, S. Goetzinger, W. Fang, H. Cao, and G. S. Solomon, “Influence of a Single Quantum Dot State on the Characteristics of a Microdisk Laser,” Phys. Rev. Lett. 98, 117401 (2007)
  W. Fang, H. Cao, and G. S. Solomon, “Control of lasing in fully chaotic open microcavities by tailoring the shape factor,” Appl. Phys. Lett. 90, 081108 (2007)
  X. Wu, W. Fang, A. Yamilov, A. A. Chabanov, A. A. Asatryan, L. C. Botten, and H. Cao, “Random lasing in weakly scattering systems,” Phys. Rev. A. 74, 053812 (2006)
  W. Fang, A. Yamilov, and H. Cao, “Analysis of high-quality modes in open chaotic microcavities,” Phys. Rev. A 72, 023815 (2005)
  W. Fang, H. Cao, Viktor Podolskiy, and Evgnii Narimanov, “Dynamical localization in microdisk lasers,” Optics Express 13, 5641 (2005)
  Z. Xie, W. Fang, H. Cao, and G. S. Solomon, "Regrowth dynamics of InAs quantum dots on the GaAs circular mesa," J. Crystal Growth 278, 342 (2005)
  W. Fang, D. Buchholz, R. Bailey, J. Hupp, P. Chang, and H. Cao, “Detection of chemical species using ultraviolet microdisk lasers,” Appl. Phys. Lett. 85, 3666 (2004)
  V. A. Podolskiy, E. E. Narimanov, W. Fang, and H. Cao, “Chaotic Microlasers based on dynamical localization,” Proc. Nat. Aca. Sci. 101, 10498 (2004)
  X. Liu, W. Fang, Y. Huang, X. H. Wu, S. T. Ho, H. Cao, R. P. H. Chang, “Optically-pumped ultraviolet microdisk laser on a silicon substrate,” Appl. Phys. Lett. 84, 2488 (2004)
  W. Fang, J. Y. Xu, A. Yamilov, H. Cao, Y. Ma, S. T. Ho, and G. S. Solomon,“Large enhancement of spontaneous emission rates of InAs quantum dots in GaAs microdisks,” Optics Letters 27, 948 (2002)
  Y. C. Kong, D. P. Yu, B. Zhang, W. Fang, and S. Q. Feng, “Ultraviolet-emitting ZnO nanowires synthesized by a physical vapor deposition approach,” Appl. Phys. Lett. 78, 407 (2001)
  Bei Zhang; Wei Fang; Dajun Wang; Feng Luan, “Anisotropic radiation pattern from InGaAlP quantum well mesa-like microdisks,” Solid State Comm. 116, 201 (2000)

  “如果发现导师信息存在错误或者偏差,欢迎随时与我们联系,以便进行更新完善。”

添加浙江大学学姐微信,或微信搜索公众号“考研派之家”,关注【考研派之家】微信公众号,在考研派之家微信号输入【浙江大学考研分数线、浙江大学报录比、浙江大学考研群、浙江大学学姐微信、浙江大学考研真题、浙江大学专业目录、浙江大学排名、浙江大学保研、浙江大学公众号、浙江大学研究生招生)】即可在手机上查看相对应浙江大学考研信息或资源

浙江大学考研公众号 考研派之家公众号

本文来源:http://m.okaoyan.com/zhejiangdaxue/daoshi_482332.html