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单层半导体中圆形光电流自旋谷光电流的电控制

Electrical Control of Circular Photogalvanic Spin-Valley Photocurrent in a Monolayer Semiconductor.

作者信息

Liu Lei, Lenferink Erik J, Wei Guohua, Stanev Teodor K, Speiser Nathaniel, Stern Nathaniel P

机构信息

Department of Materials Science and Engineering, College of Engineering , Peking University , Beijing 100871 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2019 Jan 23;11(3):3334-3341. doi: 10.1021/acsami.8b17476. Epub 2019 Jan 8.

Abstract

In a monolayer transition metal dichalcogenide (TMDC) that lacks structural inversion symmetry, spin degeneracy is lifted by strong spin-orbit coupling, and a distinctive spin-valley locking allows for the creation of valley-locked spin-polarized carriers with a circularly polarized optical excitation. When excited carriers also have net in-plane momentum, spin-polarized photocurrents can be generated at ambient temperature without magnetic fields or materials. The behavior of these spin-polarized photocurrents in monolayer TMDC remains largely unexplored. In this work, we demonstrate the tuning of spin-valley photocurrent generated from the circularly polarized photogalvanic effect in monolayer MoS, including magnitude and polarization degree, by purely electric means at room temperature. The magnitude of spin-polarized photocurrent can be modulated up to 45 times larger, and the polarization degree of the total photocurrent can be tuned significantly (here from 0.5 to 16.6%) by gate control. Combined with the atomic thickness and wafer-scale growth capabilities of monolayer TMDC, the efficient electrical tuning of spin-valley photocurrent suggests a pathway to achieve spin-logic processing by local gate architectures in monolayer opto-spintronic devices.

摘要

在缺乏结构反演对称性的单层过渡金属二硫属化物(TMDC)中,强自旋轨道耦合打破了自旋简并,独特的自旋-谷锁定使得通过圆偏振光激发能够产生谷锁定的自旋极化载流子。当被激发的载流子还具有净面内动量时,在室温下无需磁场或特定材料就能产生自旋极化光电流。单层TMDC中这些自旋极化光电流的行为在很大程度上仍未被探索。在这项工作中,我们展示了在室温下通过纯电学手段对单层MoS₂中由圆偏振光生伏打效应产生的自旋-谷光电流进行调控,包括其大小和偏振度。自旋极化光电流的大小可被调制到增大45倍,并且通过栅极控制,总光电流的偏振度可被显著调控(此处从0.5%到16.6%)。结合单层TMDC的原子厚度和晶圆级生长能力,自旋-谷光电流的高效电学调控为通过单层光自旋电子器件中的局部栅极架构实现自旋逻辑处理提供了一条途径。

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