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相移约瑟夫森结中半磁通量子态的可控操纵

Controllable Manipulation of Semifluxon States in Phase-Shifted Josephson Junctions.

作者信息

Hovhannisyan Razmik A, Golod Taras, Krasnov Vladimir M

机构信息

Department of Physics, Stockholm University, AlbaNova University Center, SE-10691 Stockholm, Sweden.

出版信息

Phys Rev Lett. 2024 May 31;132(22):227001. doi: 10.1103/PhysRevLett.132.227001.

Abstract

The utilization of Josephson vortices as information carriers in superconducting digital electronics is hindered by the lack of reliable displacement and localization mechanisms. In this Letter, we experimentally investigate planar Nb junctions with an intrinsic phase shift and nonreciprocity induced by trapped Abrikosov vortices. We demonstrate that the entrance of a single Josephson vortex into such junctions triggers the switching between metastable ±π semifluxon states. We showcase controllable manipulation between these states using short current pulses and achieve a nondestructive readout by a nearby junction. Our observations pave the way toward ultrafast and energy-efficient digital Josephson electronics.

摘要

由于缺乏可靠的位移和定位机制,约瑟夫森涡旋在超导数字电子学中作为信息载体的应用受到了阻碍。在本信函中,我们对具有由捕获的阿布里科索夫涡旋引起的固有相移和非互易性的平面铌结进行了实验研究。我们证明,单个约瑟夫森涡旋进入此类结会触发亚稳±π半磁通子态之间的切换。我们展示了使用短电流脉冲对这些状态进行可控操纵,并通过附近的结实现了无损读出。我们的观察结果为超快且节能的数字约瑟夫森电子学铺平了道路。

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