太阳城集团app-澳门太阳城集团娱乐城注册送彩金28_澳门百家乐群代理_一速全讯网111565官方 (中国)·官方网站

【航宇大講堂】Analysis of Piezoelectric Semiconductor Structures

作者:時間:2019-05-13瀏覽:1035供圖:審閱:來源:南京航空航天大學

字體:

報告題目:Analysis of Piezoelectric Semiconductor Structures

報告時間:2019517日(周五)下午14:30

報告人:  Prof. Jiashi Yang University of Nebraska-Lincoln, USA

報告地點:明故宮校區18號樓209會議室

主辦單位:機械結構力學及控制國家重點實驗室、航空學院、航空航天交叉研究院

報告內容簡介:

In piezoelectric semiconductors, the motion of charge carriers can be affected by mechanical fields through the accompanying electric field produced via piezoelectric coupling. Since the nineteen sixties, there have been efforts on using piezoelectric semiconductors to make acoustic wave devices where the effect of mechanical waves on electric currents is called the acoustoelectric effect. Relatively recently, various piezoelectric semiconductor structures have been synthesized such as ZnO fibers, tubes, belts, spirals and films. They have been used to make energy harvesters for converting mechanical energy into electrical energy, field effect transistors, and various physical as well as chemical sensors. Piezoelectric semiconductors are also used in nano-structures such as quantum wells, dots and wires. The study of piezoelectric semiconductor materials and devices is growing rapidly. Part of the study has formed a new research area called piezotronics and piezo-phototronics.

This presentation is a summary of our recent work on theoretical analysis of piezoelectric semiconductor structures such as beams and plates. It includes the effects of doping of impurities, the formation of PN junctions, static, time-harmonic, and transient dynamic motions. The macroscopic drift-diffusion theory of piezoelectric semiconductors consisting of the linear momentum equation, the charge equation of electrostatics, and the conservation of holes and electrons is employed. The equations are simplified by linearization for small carrier concentration perturbations. One- and two-dimensional equations for beams and plates in extension and bending are derived. Solutions to a few basic problems are obtained. Various electromechanical fields are calculated and examined. Composite beams of piezoelectric dielectrics and nonpiezoelectric semiconductors are also discussed.

 

報告人簡介:

Jiashi Yang is a professor at the Department of Mechanical and Materials Engineering of University of Nebraska-Lincoln. He received his B.E. and M.E. in Engineering Mechanics in 1982 and 1985 from Tsinghua University; M.S. in Mechanical Engineering in 1988 from Syracuse University; and Ph.D. in Civil Engineering in 1993 from Princeton University. He was a Postdoctoral Fellow from 1993 to 1994 at the University of Missouri-Rolla; and from 1994 to 1995 at Rensselaer Polytechnic Institute. He was employed by Motorola, Inc. as an engineer from 1995 to 1997. Since 1997 he has been an Assistant, Associate, and Full Professor at the University of Nebraska-Lincoln.


大发888东方鸿运| 24个招财方法| 五台县| 罗马百家乐娱乐城| 百家乐的路单怎样看| 百家乐六亿财富| 百家乐游戏程序出售| 澳门百家乐什么规则| 线上百家乐官网技巧| 百家乐庄家怎样赚钱| 丹东棋牌网| 95博彩通| 百家乐如何骗人| 百家乐官网赢家电子书| 通州区| 百家乐官网玄机| 大发888娱乐场下载ypu rd| 百家乐凯时娱乐网| 百家乐博彩平台| 桦南县| 通道| 在线百家乐官网官方网| 皇冠足球现金网| 盛世国际| 百家乐官网合理的投注法| 乌海市| 百家乐官网神算子| 娱乐网百家乐官网的玩法技巧和规则| 百家乐电子路单下载| 盈禾体育| 松原市| 澳门百家乐官网的故事| 百家乐官网3式打法微笑心法| 百利宫百家乐官网的玩法技巧和规则| 澳博娱乐| 太阳城百家乐官网作弊| 渝中区| 百家乐官网电脑上怎么赌| 大亨百家乐官网游戏| 海王星百家乐官网技巧| 百家乐官网软件代理打|