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 95 期( 2016年第 23期)

發布日期:2016-12-04

Title:Electromigration on Stepped Surfaces
報告人:Dr. Cormac ó Coileáin (Trinity College Dublin)
時  間:2016年12月5日(周一)上午10:00
地  點:良鄉理學樓C樓二樓報告廳


ABSTRACT
The influence of electric fields on the dynamics of steps, on vicinal surfaces, during high temperature annealing in ultra-high vacuum is examined. An innovative experimental method using custom setup was used to explicitly isolate the electromigration and thermal effects in the dynamics of the step-bunching process on the vicinal Si(111) surface.
Using atomic force microscopy to characterise and analyse the morphologies of stepped Si(111) annealed at 1130 °C and 1270 °C, it was found a reduction of the electric field results in a significant expansion of step-bunch width and an elongation of the crossing steps running along the terraces. The morphologies of step-bunches produced by annealing at 1130 °C (step-up electric field) and 1270 °C (step-down electric field), are usually described by the generalised BCF and transparent step models, respectively. These models predict different scaling relationships of the form ym ∝ hαEq, between the maximum slope of a step-bunch ym, step bunch height h and electromigration field E.  Experimentally extracted scaling exponents, α ≈2/3 and q ≈1/3, for Regime III (1270 °C) show good agreement with theoretical predictions. However, the scaling exponents α ≈ 3/5 and q ≈1/3 extracted from the morphologies created in the Regime II (1130 °C), were found to differ from those deduced from the transparent step model.
We also examine other morphological differences, such as the distinct difference observed in how the (1×1) to (7×7) phase transition manifests itself on vicinal Si(111) surfaces off-cut in the [11-2] and [-1-12] directions.  This method also allows for the first time the value of the critical electric field (Ecr), required to induce the step-bunching instability, to be probed. The dependence of Ecr on the mean initial inter-step distance (l) is investigated and discussed. Extended annealing times results in the anti-band surface instability. Using the initial or onset stage of antiband formation on step-bunched surfaces was examined at 1270 ?C while systematically varying the E-field it was possible to estimate the adatom effective charge (qeff).  The effect of varying the initial inter-step distance on the onset of the antiband instability is also discussed and experimentally examined.
Finally we consider electromigration induced step-bunching on other surfaces, the behaviour was observed experimentally for the first time on an insulating oxide surface on vicinal C-plane α-Al2O3. Surface faceting cannot account for the surface structures created by annealing in the presence of an applied electric field at 1500 °C. The effect of electric field direction and strength on the surface morphology are investigated and comparisons are drawn with step-bunching on Si(111)..

Curriculum Vitae
Dr. Cormac ó Coileáin received his bachelor, master and PhD degree from Trinity college, Queen’s University Belfast, and Trinity College Dublin, respectively. He is now the postdoc research fellow in Trinity College Dublin and King Saud University.  Despite beginning in Theoretical Physics, he has become an avid and flexible experimentalist with particular interests in surface science and nanotechnology, with extensive experience in ultra-high vacuum design and characterisation.  Since my initial work during his PhD, the dynamics of step flow and step bunching, particularly on silicon has been a long standing topic interest.  He has published more than 20 scientific research articles in peer reviewed international high impact journals.


聯系方式:物理學院辦公室 (68913163)
邀 請 人:吳漢春 研究員

網    址:http://physics.bit.edu.cn/

 


金冠娱乐城开户| 网上百家乐返水| 云鼎百家乐官网注册| 菲律宾百家乐官网娱乐场| 网络百家乐内幕| 百家乐官网娱乐皇冠世界杯| 百家乐生活馆拖鞋| 百家乐官网游戏程序下载| 大发888心得| 墨尔本百家乐官网的玩法技巧和规则 | 申城棋牌2.0| 现场百家乐官网百家乐官网| 百家乐实战案例| 金海岸百家乐的玩法技巧和规则 | 名仕国际棋牌官方网| 百家乐官网技巧之微笑心法| 百家乐视频游戏金币| 大发888下载 17| 百家乐官网博之道娱乐城| 百家乐如何必胜| 郑州百家乐的玩法技巧和规则 | 百家乐详情| 建始县| 百家乐游戏类型| 狼2老虎机清零密码| 女优百家乐的玩法技巧和规则| 威尼斯人娱乐百利宫| 真钱网络棋牌游戏| 百家乐最保险的方法| 十堰市| 百家乐有人赢过吗| 新世纪| 百家乐官网制胜法宝| 亚洲顶级赌场 塑造品牌神话| 百家乐官网发牌靴遥控| 大发888开户| 读书| 长春百家乐的玩法技巧和规则| 独赢百家乐官网全讯网| r百家乐娱乐下载| 百家乐官网客户端下载|