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利用Rashba-埃德尔斯坦效应实现约瑟夫森结的相位偏置。

Phase biasing of a Josephson junction using Rashba-Edelstein effect.

作者信息

Senapati Tapas, Karnad Ashwin Kumar, Senapati Kartik

机构信息

School of Physical Sciences, National Institute of Science Education and Research (NISER) Bhubaneswar, An OCC of Homi Bhabha National Institute, Jatni, 752050, Odisha, India.

Department of Physics, Birla Institute of Technology & Science Pilani - K K Birla Goa Campus, Zuarinagar, 403726, Goa, India.

出版信息

Nat Commun. 2023 Nov 16;14(1):7415. doi: 10.1038/s41467-023-42987-9.

Abstract

A charge-current-induced shift in the spin-locked Fermi surface leads to a non-equilibrium spin density at a Rashba interface, commonly known as the Rashba-Edelstein effect. Since this is an intrinsically interfacial property, direct detection of the spin moment is difficult. Here we demonstrate that a planar Josephson Junction, realized by placing two closely spaced superconducting electrodes over a Rashba interface, allows for a direct detection of the spin moment as an additional phase in the junction. Asymmetric Fraunhofer patterns obtained for Nb-(Pt/Cu)-Nb nano-junctions, due to the locking of Rashba-Edelstein spin moment to the flux quantum in the junction, provide clear signatures of this effect. This simple experiment offers a fresh perspective on direct detection of spin polarization induced by various spin-orbit effects. In addition, this platform also offers a magnetic-field-controlled phase biasing mechanism in conjunction with the Rashba-Edelstein spin-orbit effect for superconducting quantum circuits.

摘要

电荷电流诱导的自旋锁定费米面位移会导致Rashba界面处的非平衡自旋密度,这一现象通常被称为Rashba-Edelstein效应。由于这是一种固有的界面特性,因此直接检测自旋矩很困难。在此,我们证明,通过在Rashba界面上方放置两个紧密间隔的超导电极实现的平面约瑟夫森结,能够将自旋矩作为结中的附加相位进行直接检测。由于Rashba-Edelstein自旋矩与结中的磁通量子锁定,Nb-(Pt/Cu)-Nb纳米结获得的非对称夫琅禾费图样为这一效应提供了清晰的特征。这个简单的实验为直接检测由各种自旋轨道效应诱导的自旋极化提供了全新的视角。此外,该平台还为超导量子电路提供了一种结合Rashba-Edelstein自旋轨道效应的磁场控制相位偏置机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35f2/10654735/2956439431a1/41467_2023_42987_Fig1_HTML.jpg

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