波音游戏平台下载-波音博彩广告网_百家乐园选_sz全讯网新2xb112 (中国)·官方网站

今天是
今日新發(fā)布通知公告0條 | 上傳規(guī)范

物理學(xué)院“博約學(xué)術(shù)論壇”系列報告第 105 期

發(fā)布日期:2017-04-14

題目:Novel classical and quantum photonic devices by manipulating light-matter interactions in low-dimensional systems
報告人:Ritesh Agarwal 教授(University of Pennsylvania)
時  間:2017年4月14日(周五)上午9:30
地  點:北京理工大學(xué)中心教學(xué)樓610
Abstract:
    Strongly confined electrical, optical and thermal excitations drastically modify material’s properties and break local symmetries that can enable precisely tunable novel responses and new functionalities. With an emphasis on low-dimensional materials such as nanowires and monolayer MoS2, we will discuss how extreme confinement of fields interacting with materials produces new and unexpected materials response. For example, we will discuss how the strong plasmonic fields can lead to a new paradigm of nanoscale Si photonics such as optical emission in the visible region and nonlinear optical devices. Furthermore, by utilizing the fundamental symmetry breaking properties of fields, new quantum phenomena such as chirality-dependent optical and electronic properties will be discussed in non-chiral materials and utilized to enable new functionalities that are only possible in strong spin-orbit coupled materials. The role of geometry in low-dimensional systems to produce new properties in the presence of symmetry breaking fields will be discussed. Finally, effect of plasmons on light matter interactions in 2D excitonic crystals will be discussed, which can be engineered to produce novel responses such as enhanced and tunable emission, Fano resonances and strong exciton-plasmon polaritons, which can be precisely controlled by geometry and applied fields to produce novel device concepts.
簡歷
    Ritesh Agarwal is a Professor in the Department of Materials Science and Engineering at the University of Pennsylvania. He earned his undergraduate degree from the Indian Institute of Technology, Kanpur in 1996, and a master’s degree from the University of Chicago. He received his PhD in physical chemistry from University of California at Berkeley in 2001 researching liquid and protein solvation and photosynthesis via nonlinear optical techniques. After completing his PhD., Ritesh was a postdoctoral fellow at Harvard where he studied the photonic properties of semiconductor nanowires. His current research interests include structural, chemical, optical and electronic properties of low-dimensional systems. Ritesh is the recipient of the NSF CAREER award in 2007, NIH Director’s New Innovator Award in 2010 and the SPIE Nanoengineering Pioneer Award in 2014.
 


金宝博百家乐官网现金| 百家乐官网路子分| 百家乐官网最好打法与投注| 最新百家乐游戏机| 百家乐官网大眼仔小路| 鼎龙百家乐的玩法技巧和规则| 百家乐娱乐优惠| 真人版百家乐试玩| 百家乐官网怎么注册| 百家乐论坛博彩拉| 博亿线上娱乐城| 百家乐官网全部规则| 察哈| 澳门百家乐网上娱乐场开户注册 | 大发888娱乐城xiazai| 迪士尼百家乐官网的玩法技巧和规则 | 真博线上娱乐| 大发888充值平台| 百家乐珠仔路| 百家乐官网切入法| 百家乐陷阱| 聚宝盆百家乐官网的玩法技巧和规则 | 大发888 在线登陆| 金公主百家乐现金网| 网上百家乐好玩吗| 百家乐赌神| 网上百家乐是叫九五至尊么| 678百家乐博彩娱乐场开户注册| 24山亥山巳向造葬日课| 一直对百家乐很感兴趣.zibo太阳城娱乐城 | 百家乐官网洗码方法| 百家乐官网电脑游戏高手| 涡阳县| 单机百家乐官网棋牌| 沙龙百家乐官网娱乐平台| 做生意门朝向什么方向| 视频百家乐攻略| 百家乐赌场娱乐网规则| 太阳城77scs| 百家乐官网游戏网站| 金公主百家乐现金网|