论文标题

表面诱导的电子浆果曲率在浆果曲率的游离散装材料中

Surface induced electronic Berry curvature in Berry curvature free bulk materials

论文作者

Wawrzik, Dennis, Facio, Jorge I., Brink, Jeroen van den

论文摘要

近年来,很明显,电子浆果曲率(BC)是理解和预测晶体材料物理特性的关键概念。充满活力,自旋和热传输的大量有趣的霍尔型反应是由与固体内部的电子带相关的BC引起的:磁性材料中的异常大厅效应,以及缺乏反转对称性的非磁性系统中各种非线性霍尔和Nernst效应。但是,对于最大的已知材料类(具有反转对称性的非磁性材料),电子BC严格为零。在这里,我们证明,对于这些无BC的材料而言,有限的BC可以在其表面和接口处出现。这立即激活了产生霍尔型运输响应的某些表面。我们通过对各种对称性的BC,汞,汞(HGTE)和菱形表面的BC计算的第一原理计算来证明这一点,从而揭示了表面浆果曲率偶极子和相关的量子非线性霍尔在许多这些中的存在。这打开了大量材料,以探索和利用从与其边界相关的电子浆果曲率产生的物理效应。

In recent years it has become clear that electronic Berry curvature (BC) is a key concept to understand and predict physical properties of crystalline materials. A wealth of interesting Hall-type responses in charge, spin and heat transport are caused by the BC associated to electronic bands inside a solid: anomalous Hall effects in magnetic materials, and various nonlinear Hall and Nernst effects in non-magnetic systems that lack inversion symmetry. However, for the largest class of known materials -- non-magnetic ones with inversion symmetry -- electronic BC is strictly zero. Here we show that precisely for these bulk BC-free materials, a finite BC can emerge at their surfaces and interfaces. This immediately activates certain surfaces in producing Hall-type transport responses. We demonstrate this by first principles calculations of the BC at bismuth, mercury-telluride (HgTe) and rhodium surfaces of various symmetries, revealing the presence of a surface Berry curvature dipole and associated quantum nonlinear Hall effects at a number of these. This opens up a plethora of materials to explore and harness the physical effects emerging from the electronic Berry curvature associated exclusively to their boundaries.

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