教师库
    当前位置: 网站首页 >> 正文
    刘菊

    刘菊

    民族:汉族    性别:女   讲师

    出生日期:1988年6月  E-mail: juliu67@sina.com

    个人履历

    2016.7~至今     十大网投靠谱平台(亚洲)有限公司任教

    2011.9-2016.7   中国科学院物理研究所  光物理实验室  光学专业   理学博士

    2007.9-2011.6   中南大学    应用物理专业     理学学士

    学术研究

    研究方向:表面等离子体光学,量子光学。

    参加项目:

    ·         国家自然科学基金项目:金属微纳结构中光和物质相互作用及纳米光场调控研究;项目号: 11434017;起止年月 :2015.01-2019.12;

    ·         国家自然科学基金项目:基于表面波全息法的表面等离子体波面控制和器件设计;项目号: 11374357;起止年月:2014.01-2017.12;

    部分研究论文:

    [1] Liu Ju, Zhong Xiao-Lan, and Li Zhi-Yuan†, Enhanced light absorption of silicon in the near-infrared band by designed gold nanostructures. Chin. Phys. B, 2014, 23(4): 047306.

    [2] Ju Liu and Zhi-Yuan Li†, Interaction of a two-level atom with single-mode optical field beyond the rotating wave approximation. Opt. Express, 2014, 22(23): 28671-28682.

    [3] Liu, Ju, Chen, Yue-Gang, Gan, Lin, Xiao, Ting-Hui and Li, Zhi-Yuan†, Realization of Plasmonic Microcavity with Full Transverse and Longitudinal Mode Selection. Sci. Rep., 2016, 27565.

    [4] Zhong Xiao-Lan, Liu Ju, and Li Zhi-Yuan†, Highly enhanced broadband infrared absorption of germanium by multi-layer plasmonic nano-antenna. Chin. Opt. Lett, 2014, 12(9): 092401.

    [5] Ping-Ping Chen, Ju Liu, Li Wang, Kui-juan Jin, Yan Yin†, and Zhi-Yuan Li, Optimization and maximum potential of optical antennae in near-field enhancement. Appl. Opt., 2015, 58(15): 5822-5828.

    [6] Yue-Gang Chen, Feng-Ying Yang, Ju Liu, and Zhi-Yuan Li†, Broadband focusing and demultiplexing of surface plasmon polaritons on metal surface by holographic groove patterns. Opt. Express, 2014, 22(12): 14727-14737.

    [7] Jia-Fang Li†, Jia-jia Mu, Ben-li Wang, WeiDing, Ju Liu, Hong-lian Guo, Wu-xia Li, Chang-zhi Gu, and Zhi-Yuan Li†,Direct laser writing of symmetry-broken spiral tapers for polarization-insensitive three-dimensional plasmonic focusing. Laser Photonics Rev, 2014, 8(4): 602-609.

    [8] Yu-Hui Chen, Ming-qian Zhang, Lin Gan, Xiao-yu Wu, Lin Sun, Ju Liu, Jia Wang, and Zhi-Yuan Li†, Holographic plasmonic lenses for surface plasmons with complex wavefront profile. Opt. Express, 2014, 21(15): 17558-17566.