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    概况 Overview
    纳米光子学研究院创建于2016年,2023年获批广东省纳米光学操控重点实验室。研究院和省重点实验室是具有重要影响力的高水平科研单位,也是暨南大学光学与光学工程学科重地和高层次人才聚集地。
    
    The Institute of Nanophotonics was established in 2016 while the Guangdong Provincial Key Laboratory ...
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    队伍 The Team
    纳米光子学研究院师资队伍包括:国家自然科学二等奖获得者,教育部创新团队带头人,教育部长江特聘教授,教育部青年长江学者,教育部新世纪优秀人才,国务院政府特殊津贴专家,国家百千万人才工程人选,国家杰出青年基金获得者 ...
    
    The institute is led by Professor Baojun Li, the Distinguished Cheung Kong Scholar Professor ...
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    The institute focuses on the following four cutting-edge, fundamental & innovative fields of research ...
  • 招生 Graduates
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    欢迎具有物理、光学、光学工程、材料、生物、化学等相关专业基础、且有志于高水平纳米光子学研究的优秀学子报考暨南大学纳米光子学研究院,攻读硕士或博士学位。
    
    The institute welcomes new students to study for a master's / doctor's degree related to optics & optical engineering.
  • 招聘 Careers
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    The institute cordially invites high-level talents & outstanding young scholars to apply for open positions. Successful applicants will be offered internationally competitive salary, housing allowance, research funding, etc.
首页  学术报告
美国 Oregon State 大学王晓龙副教授学术报告

发布时间:2019-10-21

报告题目:Transparent Conductive Oxide Integrated Photonics

报告人:王晓龙  副教授

主持人:陈  沁   教授

时间:2019年11月14日10:00~11:00

地点:暨南大学纳米光子学研究院讲学厅(番禺校区恒大楼102室)


摘要:Transparent conductive oxide (TCO) materials have attracted escalating research interests for integrated photonic devices in recent years due to the extraordinary perturbation to the refractive indices achieved either through oxygen vacancy doping or electrical gating. In addition, TCO materials can be deposited with high quality using DC- or RF-sputtering on various platforms including silicon photonics, which also possess long term stability. Therefore, TCO materials are fully compatible with silicon photonics and has the potential to be readily integrated with existing silicon photonic integrated circuits (PICs). In this talk, I will review recent research progress in my group for the development of TCO-gated silicon photonic devices, including energy-efficiency silicon-TCO photonic crystal nanocavity modulators, silicon-TCO microring resonators with ultra-large E-O tuning efficiency, and broadband plasmonic-TCO electro-absorption modulators. We also achieved 5Gbit/s E-O modulation speed and will also discuss the strategy to further improve the energy efficiency to atto-joule/bit and operation bandwidth above 25 GHz.

  

报告人简介:Dr. Alan Xiaolong Wang is an Associate Professor of the School of Electrical Engineering and Computer Science at Oregon State University. He received his B.S. degree from Tsinghua University, and M.S. degree from the Institute of Semiconductors, Chinese Academy of Sciences, Beijing, P.R. China, in 2000 and 2003, respectively, and his Ph.D. degree in Electrical and Computer Engineering from the University of Texas at Austin in 2006. From January 2007 to August 2011, he was with Omega Optics, Inc., Austin, Texas, where he served as the Chief Research Scientist for multiple government funded Small Business Innovative Research projects. He joined the Oregon State University as an Assistant Professor in August 2011 and was promoted to Associate Professor in 2017. His current research activities span over nanophotonic devices including photonic crystals and surface plasmonics, silicon photonics incorporating emerging functional materials such as electro-optic polymers and transparent conductive oxides, free space optical communication, and various nano-scale optical sensors based on surface-enhanced Raman scattering, infrared absorption, and fluorescence imaging. He is also the Chief Technology Officer and Co-Founder of E-Lambda LLC, a startup company focusing on photonics technology commercialization.

He has more than 100 journal publications and more than 110 conference presentations including 16 plenary/invited presentations, and also holds seven granted or pending U.S. patents. He is a Senior Member of the Institute of Electrical and Electronics Engineers (IEEE), the Optical Society of America (OSA), and the International Society for Optics and Photonics (SPIE).

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