學術活動
凝聚态
【凝聚态物理-beat365論壇2023年第22期(總574期)】Searching for exotic quantum phases in low-dimensional vdW materials
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主講人: 張晨棟 教授(武漢大學)
地點: beat365物理樓中212教室
時間: 2023年11月2日(星期四)下午3:00-4:30
主持 聯系人: 葉堉 ye_yu@pku.edu.cn
主講人簡介: 張晨棟,2011年中國科學院物理研所畢業獲博士學位,2011-2016年在美國得科薩斯大學奧斯汀分校從事博士後研究,2017年入職武漢大學物理科學與技術學院。研究興趣集中在利用分子束外延-掃描隧道顯微學聯合的精細原子/電子結構表征手段,探索低維材料中的各種奇異量子物性(包括新奇能帶結構、電子自旋、強關聯物性等)。近年來在二維半導體異質結、基于範德華相互作用的關聯物态調控等領域取得了一系列成果。已發表SCI論文40餘篇,其中Nature/Science子刊8篇,Phys. Rev. Lett. 2篇, PNAS/ Adv. Mater /Nano Lett等多篇。現任湖北省物理學會秘書長,第六屆中國青年科技工作者協會理事,Frontiers of Physics雜志副主編。

   One of the key advantages of van der Waals materials is the great flexibility in materials engineering, giving rise to the unprecedented possibility of realizing multifarious quantum phases. This talk will be focused on two examples ( in 1D and 2D, respectively) from our recent work in this aspect. The first one is the discovery of 1D single-unit-cell-width CrCl3 atomic wires. Such a 1D wire, consisting of a single row of face-sharing CrCl6 octahedra, was grown solely on an isotropic NbSe2 vdW surface. Scanning tunneling microscopy/spectroscopy and first-principles calculations jointly revealed that the single wire is a large-gap semiconductor exhibiting a Néel-type antiferromagnetic coupling. The underlying growth mechanism reveals the critical importance of the vdW interface interaction in controlling the dimensionality conversion. The second example reports a highly controllable and scalable conversion of a monolayer nonmagnetic semiconductor into a correlated magnet. Specifically, we revealed multiple kagome flat bands across the Fermi level in monolayer MoTe2-x by fabricating a uniformly ordered mirror-twin boundary superlattice (corresponding to a stoichiometry of MoTe56/33). The partial filling nature of flat bands yields a correlated insulating state with spontaneous magnetization.