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自旋分辨量子霍尔体态与自旋单重态超导体结上的等自旋安德列夫反射

Equal-Spin Andreev Reflection on Junctions of Spin-Resolved Quantum Hall Bulk State and Spin-Singlet Superconductor.

作者信息

Matsuo Sadashige, Ueda Kento, Baba Shoji, Kamata Hiroshi, Tateno Mizuki, Shabani Javad, Palmstrøm Christopher J, Tarucha Seigo

机构信息

Department of Applied Physics, University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.

Center for Emergent Matter Science, RIKEN, 2-1, Hirosawa, Wako-shi, Saitama, 351-0198, Japan.

出版信息

Sci Rep. 2018 Feb 22;8(1):3454. doi: 10.1038/s41598-018-21707-0.

Abstract

The recent development of superconducting spintronics has revealed the spin-triplet superconducting proximity effect from a spin-singlet superconductor into a spin-polarized normal metal. In addition recently superconducting junctions using semiconductors are in demand for highly controlled experiments to engineer topological superconductivity. Here we report experimental observation of Andreev reflection in junctions of spin-resolved quantum Hall (QH) states in an InAs quantum well and the spin-singlet superconductor NbTi. The measured conductance indicates a sub-gap feature and two peaks on the outer side of the sub-gap feature in the QH plateau-transition regime increases. The observed structures can be explained by considering transport with Andreev reflection from two channels, one originating from equal-spin Andreev reflection intermediated by spin-flip processes and second arising from normal Andreev reflection. This result indicates the possibility to induce the superconducting proximity gap in the the QH bulk state, and the possibility for the development of superconducting spintronics in semiconductor devices.

摘要

超导自旋电子学的最新发展揭示了从自旋单重态超导体到自旋极化正常金属的自旋三重态超导邻近效应。此外,近来使用半导体的超导结对于设计拓扑超导的高度可控实验来说是必需的。在此,我们报告了在砷化铟量子阱中的自旋分辨量子霍尔(QH)态与自旋单重态超导体铌钛的结中安德烈夫反射的实验观测结果。测量得到的电导表明了一个亚能隙特征,并且在量子霍尔平台 - 转变区域中,亚能隙特征外侧的两个峰增加。通过考虑来自两个通道的安德烈夫反射的输运可以解释所观测到的结构,一个通道源于由自旋翻转过程介导的等自旋安德烈夫反射,另一个通道源于正常安德烈夫反射。这一结果表明在量子霍尔体态中诱导超导邻近能隙的可能性,以及在半导体器件中发展超导自旋电子学的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a16/5823919/c7f0d2c0672e/41598_2018_21707_Fig1_HTML.jpg

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