全讯网-皇冠网_百家乐网_全讯网娱乐 (中国)·官方网站

今天是
今日新發布通知公告1條 | 上傳規范

佐治亞理工學院Naresh Thadhani教授學術講座預告

發布日期:2016-09-27

  報告題目:

  1. World of Materials Research in MSE @ Georgia Tech

  2. Multilayer Optical Structures for Time-Resolved Meso-Scale Sensing of Shock Compression Effects in Heterogeneous Materials

  

  報告人:NareshThadhani

  報告時間:2016年9月29日上午10:00

  報告地點:研究生樓101報告廳

  

  報告人簡介:

  Professor NareshThadhani is Chair of the School of Materials Science and Engineering at the Georgia Institute of Technology, where he has been on the faculty since 1992. His current research focuses on probing the mechanisms of shock-induced physical and chemical changes and the deformation and fracture response of various materials under shock compression and high-rate impact loading conditions. He has graduated 21 Ph.D. and 18 M.S. degree students. He is Fellow of the American Physical Society and of ASM International. He has authored of more than 300 publications in journals and conference proceedings, and is Editor of Springer Book Series on Shock Compression, Associate Editor of Journal of Dynamic Deformation of Materials and Shock Waves: An International Journal, Key Reader for Metallurgical and Materials Transactions, and Past President of Alpha Sigma Mu.

  報告簡介:

  The School of Materials Science and Engineering (MSE) at Georgia Tech (GT) is one of the largest and most diverse materials programs. Our research portfolio spans all classes and forms of materials addressing a multitude of functionalities from structural load-bearing to energy storage and harvesting; and electronic, photonic, and opto-electronic devices to drug delivery and implants. As a world leader in educating the next generation of scientists and engineers, our vision is to define the future of MSE through academic excellence and research innovations focused on envisioning, predicting, designing, and developing materials for tomorrow’s challenges in energy, environment, health and human welfare, infrastructure, security, and transportation.

  The speech will demonstrate research on the design and testing of novel 1-D photonic crystal sensors based on Distributed Bragg Reflectors (DBRs) which are dielectric stacks composed of alternating layers of high and low refractive index materials, and Optical Micro Cavity (OMC) structures composed of dielectric cavity layer placed between two metal mirror layers. Both structures generate size tunable characteristic spectral properties either through reflectance peak (for DBRs) or reflectance minima (for OMC). The spectral responses of DBR and OMC structure are being investigated under homogeneous and heterogeneous loads, using laser-driven shocks and time-resolved spectroscopy enabled by a spectrograph-coupled streak camera. Optomechanical simulations utilizing a custom multi-physics framework is performed, to correlate predictions to experimental observations. Initial experimental results indicate that the multilayers exhibit a highly time-resolved spectral response to shock compression. Additionally, the multilayers exhibit a spatially-resolved spectral response under heterogeneous shock load. The understanding generated from such spatially and temporally-resolved diagnostics, combined with meso-scale simulations, can help determine the effects of heterogeneities on shock compression of heterogeneous materials. 

  


大发888 没人举报吗| 博盈娱乐场| 百家乐存在千术吗| 全讯网888| 百家乐官网怎样玩才能赢| 在线百家乐大家赢| bet365注册 jxhymp| 百家乐官网澳门色子| 百家乐透视牌靴价格| 百家乐官网账号变动原因| 百家乐出千工具价格| 足球下注| 百家乐桌手机套| 网上百家乐官网分析软件| 网上百家乐记牌软件| 海立方百家乐官网客户端| 游戏机百家乐下载| 噢门百家乐官网玩法| 博彩百家乐软件| 大亨百家乐官网娱乐城| 娱乐网百家乐的玩法技巧和规则 | 做生意门面朝向风水| 菲律宾在线游戏| 百家乐概率投注| 在线博彩网| 百家乐网上投注文章| 网上百家乐官网骗人吗| 百家乐博弈之赢者理论| 百家乐官网是个什么样的游戏 | 威尼斯人娱乐棋牌| 赌王百家乐官网的玩法技巧和规则| 金宝博网站| 百家乐任你博娱乐平台| 百家乐官网技论坛| 德州扑克策略| 百家乐棋牌交友| MG百家乐官网大转轮| 皇冠博彩| 百家乐破解方法技巧| 实战百家乐官网十大取胜原因百分百战胜百家乐官网不买币不吹牛只你能做到按我说的.百家乐官网基本规则 | bet365最稳定网址|