二八杠规则-二八杠魔术麻将牌

Current Status of Research on Rare Earth Doped Ultrawide Bandgap Semiconductors

發布者:文明辦發布時間:2024-12-27瀏覽次數:10


主講人:郭其新 日本佐賀大學教授


時間:2025年1月3日10:00


地點:數理學院十號樓222室


舉辦單位:數理學院


主講人介紹:Prof. Dr. Guo received his B.E., M.E., and D.E. degrees in Electronic Engineering from Toyohashi University of Technology in 1990, 1992, and 1996, respectively. He is currently a Professor in the Department of Electrical and Electronic Engineering at Saga University. From April 2012 to March 2022, he served as the Director of the Saga University Synchrotron Light Application Center in Japan. His research focuses on the epitaxial growth and characterization of semiconductor materials. Prof. Guo has authored over 385 papers in renowned scientific journals, including Nature Communications, Advanced Materials, Physical Review B, and Applied Physics Letters. His work has received more than 11,000 citations, with an h-index of 54. He has been recognized as one of the world's top 2% scientists by Stanford University.


內容介紹:Ultrawide bandgap (UWBG) semiconductors, including AlN, BN, diamond, and Ga2O3 are at the forefront of extensive research efforts, covering a wide spectrum of materials, physics, devices, and applications. Microscale light emitting diodes (μLEDs) have attracted significant attention for their applications in augmented and virtual reality displays. Achieving high pixel density, efficiency, brightness, stable emission, and full-color emission is crucial for μLEDs. However, realizing full color μLED display technology poses challenges due to conventional mass transfer processes necessitating the extraction and precise transfer of red, green, and blue μLED chips from different epitaxial wafers. Rare earth (RE) doped semiconductors, characterized by strong and sharp emission resulting from intra-4f-shell transitions in RE ion cores, hold promise for applications in color display and luminescence devices. Extensive efforts have historically been dedicated to achieving visible color emission using RE doped GaN. Reports suggest that the luminescence efficiency of dopant emissions could significantly improve with an ultrawide bandgap host.

熱點新聞
最新要聞
澳门百家乐是怎样赌| 百家乐高| 真人百家乐作假视频| k7线上娱乐城| 沙龙百家乐官网娱乐场开户注册| 神话百家乐官网的玩法技巧和规则| 百家乐轮盘怎么玩| 丹凤县| 至尊百家乐娱乐平台| 百家乐官网免费是玩| 澳门百家乐看路博客| 百家乐官网闲拉长龙| 老虎机的规律| 百家乐有不有作弊| 棋牌百家乐官网程序破解| 菲利宾百家乐现场| 老钱庄百家乐官网的玩法技巧和规则 | 澳门百家乐官网网络游戏信誉怎么样| 迪威百家乐赌场娱乐网规则 | 亚洲顶级赌场手机版| 百家乐心态研究| 汝南县| 大发888登不上| 百家乐经典路单| 游戏百家乐官网庄闲| 乐清市| 娱乐城代理| YY百家乐的玩法技巧和规则| 网上百家乐官网赌场娱乐网规则| 威尼斯人娱乐场wnsrdcylcbywz| 任我赢百家乐官网自动投注系统| 真人百家乐赌注| 打百家乐官网纯打庄的方法| 百家乐官网看点打法| 大发888缺少 casino| 怎么玩百家乐的玩法技巧和规则| 百家乐官网作弊工具| 立博网| 德州扑克游戏下载| 大发888手机登录平台| 大发888娱乐游戏注册|