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手性诱导自旋选择性产生的线性和非线性双端自旋阀效应

Linear and Nonlinear Two-Terminal Spin-Valve Effect from Chirality-Induced Spin Selectivity.

作者信息

Liu Tianhan, Wang Xiaolei, Wang Hailong, Shi Gang, Gao Fan, Feng Honglei, Deng Haoyun, Hu Longqian, Lochner Eric, Schlottmann Pedro, von Molnár Stephan, Li Yongqing, Zhao Jianhua, Xiong Peng

机构信息

Department of Physics, Florida State University, Tallahassee, Florida 32306, United States.

State Key Laboratory of Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.

出版信息

ACS Nano. 2020 Nov 24;14(11):15983-15991. doi: 10.1021/acsnano.0c07438. Epub 2020 Nov 2.

Abstract

Various mechanisms of electrical generation of spin polarization in materials have been a subject of broad interest for their underlying physics and device potential in spintronics. One such scheme is chirality-induced spin selectivity (CISS), with which structural chirality leads to different electric conductivities for electrons of opposite spins. The resulting effect of spin filtering has been reported for a number of chiral molecules assembled on different surfaces. However, the microscopic origin and transport mechanisms remain controversial. In particular, the fundamental Onsager relation was argued to preclude linear-response detection of CISS by a ferromagnet. Here, we report definitive observation of CISS-induced magnetoconductance in vertical heterojunctions of (Ga,Mn)As/AHPA-L molecules/Au, directly verifying spin filtering by the AHPA-L molecules spin detection by the (Ga,Mn)As. The pronounced and robust magnetoconductance signals resulting from the use of a magnetic semiconductor enable a rigorous examination of its bias dependence, which shows both linear- and nonlinear-response components. The definitive identification of the linear-response CISS-induced two-terminal spin-valve effect places an important constraint for a viable theory of CISS and its device manifestations. The results present a promising route to spin injection and detection in semiconductors without using any magnetic material.

摘要

材料中自旋极化的各种电产生机制因其潜在的物理特性和在自旋电子学中的器件潜力而受到广泛关注。一种这样的机制是手性诱导自旋选择性(CISS),通过这种机制,结构手性导致自旋相反的电子具有不同的电导率。对于组装在不同表面上的许多手性分子,已经报道了由此产生的自旋过滤效应。然而,其微观起源和传输机制仍存在争议。特别是,有人认为基本的昂萨格关系排除了铁磁体对CISS的线性响应检测。在这里,我们报告了在(Ga,Mn)As/AHPA-L分子/Au的垂直异质结中对CISS诱导的磁电导的明确观察,直接验证了AHPA-L分子的自旋过滤和(Ga,Mn)As的自旋检测。使用磁性半导体产生的明显且稳健的磁电导信号使得能够对其偏置依赖性进行严格检查,这显示出线性和非线性响应成分。对线性响应的CISS诱导的两端自旋阀效应的明确识别对CISS及其器件表现的可行理论施加了重要限制。这些结果为在不使用任何磁性材料的情况下在半导体中进行自旋注入和检测提供了一条有前景的途径。

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