论文标题

蜂窝状莫特绝缘子在米粉上

Honeycomb-Lattice Mott insulator on Tantalum Disulphide

论文作者

Lee, Jinwon, Jin, Kyung-Hwan, Catuneanu, Andrei, Go, Ara, Jung, Jiwon, Won, Choongjae, Cheong, Sang-Wook, Kim, Jaeyoung, Liu, Feng, Kee, Hae-Young, Yeom, Han Woong

论文摘要

电子多体相互作用的效果在电子系统中放大了带宽狭窄的电子系统的效果,开辟了一种外来物理学的方式。二维(2D)蜂窝晶格中的狭窄带特别有趣,与狄拉克带和拓扑特性相结合,但是尚未确定由凯恩 - 梅利 - 哈伯德模型描述的强烈相互作用的蜂窝晶格的材料实现。在这里,我们报告了一种新颖的方法,可以实现2D蜂窝局部窄带系统,并具有强烈​​的相互作用5 $ d $电子。我们将著名的三角形晶格2D Mott绝缘子1T-TAS $ _2 $设计到利用吸附物上层建筑的蜂窝状晶格中。最佳覆盖范围的钾(k)adtoms耗尽了未配对的$ d $电子的三分之一,其余电子形成一个蜂窝状晶格,跳跃很小。从头算计算显示,非常狭窄的z $ _2 $拓扑谱带模仿凯恩 - 梅勒模型。电子光谱检测到一个数量级更大的电荷差距,从而确认了通过动态平均场理论证实的实质电子相关性。它可能是第一个具有有限旋转Chern号码的人造莫特绝缘子。

Effects of electron many-body interactions amplify in an electronic system with a narrow bandwidth opening a way to exotic physics. A narrow band in a two-dimensional (2D) honeycomb lattice is particularly intriguing as combined with Dirac bands and topological properties but the material realization of a strongly interacting honeycomb lattice described by the Kane-Mele-Hubbard model has not been identified. Here we report a novel approach to realize a 2D honeycomb-lattice narrow-band system with strongly interacting 5$d$ electrons. We engineer a well-known triangular lattice 2D Mott insulator 1T-TaS$_2$ into a honeycomb lattice utilizing an adsorbate superstructure. Potassium (K) adatoms at an optimum coverage deplete one-third of the unpaired $d$ electrons and the remaining electrons form a honeycomb lattice with a very small hopping. Ab initio calculations show extremely narrow Z$_2$ topological bands mimicking the Kane-Mele model. Electron spectroscopy detects an order of magnitude bigger charge gap confirming the substantial electron correlation as confirmed by dynamical mean field theory. It could be the first artificial Mott insulator with a finite spin Chern number.

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