论文标题

超导式涡旋运动的相图在超晶格中,具有非中心对称性

Phase diagram of superconducting vortex ratchet motion in a superlattice with noncentrosymmetry

论文作者

Li, Shengyao, Zhang, Lijuan, Huang, Ke, Ye, Chen, Xing, Tingjing, Yang, Liu, Yang, Zherui, Zhu, Qiang, Sun, Bo, Wang, Xueyan, Wang, X. Renshaw

论文摘要

超导涡旋的棘轮运动是超导体中涡流的定向流动,对于探索量子现象和开发超导装置(例如超导二极管和微波天线)非常有用。但是,由于涡流动态运动的定量表征挑战,涡旋棘轮运动的相图仍然缺失,尤其是在具有低维结构的超导体中。在这里,我们使用非股票磁通转运器在高度各向异性的超晶格超导体(SNS)1.17NBS2中建立了涡旋运动的定量相图。具有分层的原子结构和非中心对称性的(SNS)1.17NBS2在垂直于平面的磁场中表现出非偏置的磁转运,这被认为是超导涡流的棘轮运动的明显。我们证明了棘轮运动对当前的激发,磁场和热扰动有反应。此外,我们推断了一个巨大的非倒数系数(γ),该系数(γ)定量描述了涡旋棘轮运动的大小,并最终建立了用定量描述的涡旋运动的相图。最后,我们建议棘轮运动源自煎饼涡流(PVS)和Josephson Vortices(JVS)的共存。相图是需要控制超晶格超导体中的涡旋运动并开发下一代节能超导设备的。

Ratchet motion of superconducting vortices, which is a directional flow of vortices in superconductors, is highly useful for exploring quantum phenomena and developing superconducting devices, such as superconducting diode and microwave antenna. However, because of the challenges in the quantitative characterization of the dynamic motion of vortices, a phase diagram of the vortex ratchet motion is still missing, especially in the superconductors with low dimensional structures. Here we establish a quantitative phase diagram of the vortex ratchet motion in a highly anisotropic superlattice superconductor, (SnS)1.17NbS2, using nonreciprocal magnetotransport. The (SnS)1.17NbS2, which possesses a layered atomic structure and noncentrosymmetry, exhibits nonreciprocal magnetotransport in a magnetic field perpendicular and parallel to the plane, which is considered a manifest of ratchet motion of superconducting vortices. We demonstrated that the ratchet motion is responsive to current excitation, magnetic field and thermal perturbation. Furthermore, we extrapolated a giant nonreciprocal coefficient (γ), which quantitatively describes the magnitude of the vortex ratchet motion, and eventually established phase diagrams of the ratchet motion of the vortices with a quantitative description. Last, we propose that the ratchet motion originates from the coexistence of pancake vortices (PVs) and Josephson vortices (JVs). The phase diagrams are desirable for controlling the vortex motion in superlattice superconductors and developing next-generation energy-efficient superconducting devices.

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