论文标题

可调性手性依赖性非线性电反应

Tunable Chirality-dependent Nonlinear Electrical Responses in 2D Tellurium

论文作者

Niu, Chang, Qiu, Gang, Wang, Yixiu, Tan, Pukun, Wang, Mingyi, Jian, Jie, Wang, Haiyan, Wu, Wenzhuo, Ye, Peide D.

论文摘要

柜(TE)是具有简单手性晶体结构的元素半导体。通过基于溶液的方法合成的二维(2D)形式的TE显示出出色的电气,光学和热性能。在这项工作中,通过热硫酸蚀刻和高角度倾斜的高分辨率扫描透射电子显微镜来鉴定和分析水热生长的2D TE的手性。在磁场下,在2D TE中观察到栅极可调的非线性电响应,包括纵向沿纵向的非偏射电运转运和横向横向上的非线性平面霍尔效应。此外,由于手性对称性确保了相反的自旋极化,因此非线性电响应在左手和右2D TE中具有相反的体征。两个对映异构体中的自旋轨道耦合与晶体对称性之间的基本关系为实现基于手性的电子设备的可行平台通过将手性自由度引入电子传输中。

Tellurium (Te) is an elemental semiconductor with a simple chiral crystal structure. Te in a two-dimensional (2D) form synthesized by solution-based method shows excellent electrical, optical, and thermal properties. In this work, the chirality of hydrothermally grown 2D Te is identified and analyzed by hot sulfuric acid etching and high-angle tilted high-resolution scanning transmission electron microscopy. The gate-tunable nonlinear electrical responses, including the nonreciprocal electrical transport in the longitudinal direction and the nonlinear planar Hall effect in the transverse direction, are observed in 2D Te under a magnetic field. Moreover, the nonlinear electrical responses have opposite signs in left- and right-handed 2D Te due to the opposite spin polarizations ensured by the chiral symmetry. The fundamental relationship between the spin-orbit coupling and the crystal symmetry in two enantiomers provides a viable platform for realizing chirality-based electronic devices by introducing the chirality degree of freedom into electron transport.

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