赌博网-赌球网址-体育

今天是
今日新發布通知公告0條 | 上傳規范

物理學院“博約學術論壇”系列報告第40期

發布日期:2013-09-04
題 目:Physics and Applications of Spin Hall Effect
報告人:郭光宇教授 (臺灣大學物理系)
時  間:2013年9月6日(星期五)上午10:00 
地  點:中心教學樓610

ABSTRACT Spin Hall effect (SHE) refers to the generation of transverse spin current in a solid by an electric field. Spin current generation is an important issue in the emerging spintronic technology. Thus, SHE has recently attracted considerable interest both theoretically and experimentally since the theoretical proposals of the intrinsic SHE. In this talk, I will first give an introduction to SHE, and then describe ab initio theoretical approaches to the various issues in the field of SHE, in particular, Berry phase theory and ab initio relativistic band structure method. This will be followed by a review on our recent relativistic band theoretical studies on the intrinsic SHE in Pt, Al, Pd, Au and Mo. In particular, our ab initio calculations revealed that the resonant contribution from the spin-orbit splitting of the doubly degenerated d bands near the Fermi level gives rise to a large intrinsic spin Hall conductivity in Pt and Pd. 
    Furthermore, our electronic structure calculations for various transition metal impurities in gold indicated possible orbital-dependent Kondo effect in Fe impurity in Au. Thus, the gigantic SHE observed recently in FePt/Au system was attributed to resonant skew scattering due to multi-orbital Kondo effect. Our estimated spin Hall angle is about 0.1, in agreement with the measured value. Indeed, our subsequent quantum Monte Carlo simulations for a realistic three-orbital Anderson impurity model demonstrated two Kondo temperatures in Fe in Au: one very low Kondo temperature for Fe deg-states and the other high Kondo temperature for Fe t2g-states. It was also found that the spin-orbit interaction and hence the SHE is strongly renormalized by the quantum spin fluctuation. This explains why the gigantic SHE in Au with Fe impurities was observed in recent experiments, while it is not visible in the anomalous Hall effect. Moreover, latest experiments on Au films with well controlled Fe impurity concentrations confirmed that the spin Hall angle is about 0.07 and independent of Fe impurity concentration, thereby indicating the extrinsic nature of the SHE observed in FePt/Au systems. 

Curriculum Vitae:
1. Education and Degrees
1) B. Sc. (1987): Xiamen University, Fujian, China (1978/10 – 1982/7);
2) Ph.D.: Cambridge University, England, UK (1983/10 – 1987/5).
2. Professional Experience
1) Distinguished Professor, Taiwan University, Taiwan,(2006/8-present).
2) Chair Professor and Director, Chengchi University, Taiwan (2009/8-2013/7)
3) Vice Dean, Chengchi University, Taiwan (2010/8-2011/7)
4) Professor, Department of Physics, Taiwan University, Taiwan (1998/08-2006/07)
5) Staff Scientist, Daresbury Laboratory, UK (1989/10-1998/07). A
6) Postdoctoral Research Associate, Daresbury Laboratory, UK (1987/06-1989/08). 


聯系方式:物理學院辦公室(68913163)
網    址: http://physics.bit.edu.cn/

(審核:姚裕貴)


威尼斯人娱乐场色碟| 做生意开店风水| 晓游棋牌游戏大厅下载| 百家乐官网博之道娱乐城| 百家乐翻天qvod粤语| 百家乐官网美女真人| 百家乐赢足球博彩皇冠| 澳门金沙赌场| 百家乐西园二手房| 真人娱乐城开户送钱| 至尊百家乐官网赌场娱乐网规则 | 做生意用的 风水上最好的尺寸有| 博发娱乐| 百家乐软件稳赚| 百家乐模拟游戏下载| 百家乐官网澳门赌| 百家乐官网代理加盟| 百家乐高手长胜攻略| 赌场百家乐官网投注公式| 大发888娱乐城官方网站| 百家乐概率怎么算| 百家乐官网最新道具| 信誉棋牌评测网| 百家乐新台第二局| 百家乐官网双龙出海注码法| 大发888娱乐场下载lm0| 德州百家乐赌博规则| 百家乐官网深圳广告| 百家乐官网有方法赚反水| 大发888游戏秘籍| 广发百家乐的玩法技巧和规则 | 百家乐凯时娱乐网| 新锦江百家乐官网的玩法技巧和规则| 爱赢娱乐城开户| 百家乐路单统| 关于百家乐切入点| 百家乐官网百家乐官网视频| 二八杠怎么赢钱| 至尊百家乐网| 博天堂百家乐官网官网| 百家乐官网代理商博彩e族|