超级皇冠网分布图-皇冠网hg9388.com_百家乐统计工具_全讯网帝国cms网站源 (中国)·官方网站

Faculty

中文       Go Back       Search
LIU Chang
Professor
0755-88018221
liuc@sustech.edu.cn

Brief Introduction
LIU Chang, Professor of the Department of Physics, SUSTech. Dr. Liu’s research mainly focuses on revealing the novel electronic properties of functional materials such as magnetic, topological, and thermoelectric materials, using angle resolved photoemission spectroscopy (ARPES) and other spectroscopic techniques. His research group also masters the techniques of material growth such as the flux method, chemical vapor transfer (CVT) and molecular beam epitaxy (MBE). On the field of magnetic materials, his work uncovers the spin splitting of energy bands in an unconventional antiferromagnet. In the field of topological materials, his works presented e.g., a gapless topological surface state in magnetic topological insulators and the Fermi arcs in three dimensional Dirac semimetals.


Research Interests
1. The technique of angle resolved photoemission spectroscopy (ARPES) and ultrahigh vacuum;
2. Electronic properties of iron-based high temperature superconductors;
3. Exotic electronic behavior in topological insulators and topologically nontrivial materials;
4. Electronic properties of graphene and related structures.


Professional Experiences

2024-Present: Professor, Department of Physics, SUSTech

2015-2024: Associate Professor, Department of Physics, SUSTech

2014-2015: Assistant Professor, Department of Physics, SUSTech

2011-2014: Postdoctoral Research Associate, Princeton University (USA)


Educational Background
2006-2011: PhD in Condensed Matter Physics, Iowa State University (USA)
2003-2006: BS in Department of Physics, Sun Yat-sen University (China)
2001-2003: Department of Urban Planning, Sun Yat-sen University (China)


Selected Publications

1. M. Zeng et al., Observation of spin splitting in room-temperature metallic antiferromagnet CrSb. Adv. Sci. 11, 2406529 (2024).

2. Y.-P. Zhu et al., Observation of plaid-like spin splitting in a noncoplanar antiferromagnet. Nature 626, 523 (2024).

3. X.-R. Liu et al., Spectroscopic signature of obstructed surface states in SrIn2P2. Nat. Commun. 14, 2905 (2023).

4. Y.-J. Hao et al., Gapless surface Dirac cone in antiferromagnetic topological insulator MnBi2Te4. Phys. Rev. X 9, 041038 (2019) (Physics 精選報道).

5. Q. Lu et al., Unexpected large hole effective masses in SnSe revealed by angle-resolved photoemission spectroscopy. Phys. Rev. Lett. 119, 116401 (2017).

百家乐官网专打单跳投注法| 新世百家乐官网的玩法技巧和规则| 六合彩开奖现场| 百家乐官网计划软件| 枝江市| 真人百家乐蓝盾赌场娱乐网规则| 百家乐官网怎么看大小| 石河子市| 全讯网3344666| 豪门百家乐官网的玩法技巧和规则| 贵阳市| 大发888娱乐城客服电话| 百家乐园鼎丰娱乐城| 美女百家乐官网的玩法技巧和规则 | 大发888娱乐城888bg| 嘉禾百家乐官网的玩法技巧和规则| 大发888官方网站登陆| 百家乐singapore| 778棋牌游戏| 百家乐电脑游戏机投注法实例| 百家乐官网揽法大全| 百家乐官网在线小游戏| 棋牌评测网站| 太阳百家乐管理网| 立即博百家乐现金网| 百家乐官网游戏奥秘| 大发888娱乐城官方下载| 24鸡是什么命| 百家乐官网投注心得和技巧| 温宿县| 大发足球| 百家乐平注法规则| 斗地主百家乐的玩法技巧和规则 | 百家乐有作弊的吗| 百家乐官网群b28博你| 百家乐官网书| 宁德市| 足球投注技巧| 北京德州扑克比赛| 大发888娱乐城888bg| 大发888王博|