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具有原子级薄磁性绝缘体的伊辛超导体约瑟夫森结中的非常规超流相。

Unconventional supercurrent phase in Ising superconductor Josephson junction with atomically thin magnetic insulator.

作者信息

Idzuchi H, Pientka F, Huang K-F, Harada K, Gül Ö, Shin Y J, Nguyen L T, Jo N H, Shindo D, Cava R J, Canfield P C, Kim P

机构信息

Department of Physics, Harvard University, Cambridge, MA, USA.

WPI Advanced Institute for Materials Research and Center for Science and Innovation in Spintronics, Tohoku University, Sendai, Japan.

出版信息

Nat Commun. 2021 Sep 9;12(1):5332. doi: 10.1038/s41467-021-25608-1.

Abstract

In two-dimensional (2D) NbSe crystal, which lacks inversion symmetry, strong spin-orbit coupling aligns the spins of Cooper pairs to the orbital valleys, forming Ising Cooper pairs (ICPs). The unusual spin texture of ICPs can be further modulated by introducing magnetic exchange. Here, we report unconventional supercurrent phase in van der Waals heterostructure Josephson junctions (JJs) that couples NbSe ICPs across an atomically thin magnetic insulator (MI) CrGeTe. By constructing a superconducting quantum interference device (SQUID), we measure the phase of the transferred Cooper pairs in the MI JJ. We demonstrate a doubly degenerate nontrivial JJ phase (ϕ), formed by momentum-conserving tunneling of ICPs across magnetic domains in the barrier. The doubly degenerate ground states in MI JJs provide a two-level quantum system that can be utilized as a new dissipationless component for superconducting quantum devices. Our work boosts the study of various superconducting states with spin-orbit coupling, opening up an avenue to designing new superconducting phase-controlled quantum electronic devices.

摘要

在缺乏反演对称性的二维(2D)NbSe晶体中,强自旋轨道耦合使库珀对的自旋与轨道谷对齐,形成伊辛库珀对(ICP)。通过引入磁交换,可以进一步调制ICP不寻常的自旋纹理。在此,我们报道了范德华异质结构约瑟夫森结(JJ)中的非常规超流相,该结通过原子级薄的磁绝缘体(MI)CrGeTe耦合NbSe ICP。通过构建超导量子干涉器件(SQUID),我们测量了MI JJ中转移的库珀对的相位。我们展示了一个双重简并的非平凡JJ相位(ϕ),它由ICP在势垒中跨磁畴的动量守恒隧穿形成。MI JJ中的双重简并基态提供了一个两能级量子系统,可作为超导量子器件的新型无耗散组件。我们的工作推动了对具有自旋轨道耦合的各种超导态的研究,为设计新的超导相控量子电子器件开辟了一条途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ec3/8429564/9aeddd2df68b/41467_2021_25608_Fig1_HTML.jpg

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