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    【学术报告】丹麦科技大学肖三水副教授学术报告会
      审核人:

    报告题目:纳米光学前沿学术讲座

    报 告 人:肖三水副教授

    报告时间:2019年6月28日 上午8:30

    报告地点:航海学院主楼201会议室

    邀 请 人:刘星 助理教授

    报告摘要:In this talk, I will first discuss structural color, i.e., how to use nanostructure to generate color. Particularly, colour generation by plasmonic nanostructure with its advantage of reduced pixel area and sub-wavelength resolution will be discussed in detail. Then I will discuss      how to engineer light-matter interaction up to the strong-         coupling regime at room temperature, which is one of the cornerstones of modern    nanophotonics for potential applications such as quantum information processing and quantum light sources. The combination of transition metal  dichalcogenides with plasmonic nanocavities will be addressed to explore the strong-coupling regime. Finally, I will discuss how to probe light-    matter interactions in the subwavelength region by use of the scattering type scanning nearfield optical microscopy, and utilizing this technology,   Anderson localization of graphene plasmon will be discussed.

    报告人简介:Sanshui Xiao obtained his PhD degree at Zhejiang University in 2004. In August 2004,he joined the Royal Institute of Technology as a post-doc researcher. In 2006, he started to work at the Technical University of Denmark, and he is now holding Professor there. His current research interests include exploration of fundamental     physics of light-matter interactions at the nanoscale and development of graphene-based optoelectronic devices. He has co-organized several sessions at PIERS, AME, and       EMN conferences, and obtained the European Optics Prize from the European Optical Society in 2008. He also serves the topical editor for Applied Optics.He has published   more than 100 jounral artiles including Nature Communications,Nano Letters, Advanced Science, with the total scitation over 3000, and H-index of 31.He is PI of five projects and participating two large-scale projects "Center for Nanostructured Graphene" and "Nanophotonics for Telecommunication"as a leadingscientist.