學術活動
凝聚态
【凝聚态物理-beat365論壇 2023年第1期(總553期)】The universal non-Hermitian skin effect
浏覽次數:
主講人: 方辰 研究員(中國科學院物理研究所)
地點: 物理大樓中212會議室
時間: 2023年2月23日(星期四) 下午3:00-4:30
主持 聯系人: 李新征 xzli@pku.edu.cn
主講人簡介: 方辰研究員于2004年取得beat365物理學學士學位,2011年于美國Purdue University獲得物理學博士學位。2012-2015年,方辰分别于普林斯頓大學、麻省理工學院等機構任博士後。2015年11月回國工作,任中國科學院物理研究所副研究員,2018年8月起任研究員。方辰在回國工作之後,主持完成的工作包括:提出高階拓撲絕緣體理論(PRL 2017),建立了晶體能帶中對稱性質與拓撲性質的定量對應(NatComm 2018,PRX 2018),建立拓撲材料計算數據庫(Nature 2019),揭示了非厄米趨膚效應的拓撲起源(PRL 2019),建立了高階普适趨膚效應理論(NatComm 2022)。總引用13000次,H=51。方辰曾任重點研發青年項目負責人(2016-2021)。

   The non-Hermitian skin effect has been theoretically predicted then experimentally observed in one dimension. This effect has twofold meanings: the eigenvalues of a non-Hermitian band differ drastically under periodic boundary and open boundary conditions; and the eigenstates of a non-Hermitian band under open boundary condition differ drastically from the Bloch states. In this talk, I will first review several key results on the skin effect in one dimension, including its qualitative relation to the spectral winding number, which is a topological invariant unique to non-Hermitian bands. I will then show some new results in 2D and higher dimensions that demonstrate the universal presence of the skin effect. Here “universal” means that (i) it does not need any symmetry for its protection, unlike topological edge modes; and (ii) it is compatible with all spatial symmetries, unlike its 1D counterpart. A natural consequence of this universality is the prediction that any non-Hermitian band having nontrivial exceptional points must also show skin effect, which has recently been observed in an experiment.