动态驱动和静态参数联合调制诱导的富异常浮凸超导电性

Donghao Wang, Cong Cen, Liangliang Lu, Mengyao 李梦瑶, Zixuan Ding, Yongchun Tao, Jingguo Hu
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引用次数: 0

摘要

手性拓扑超导体(TSC)的特点是手性马约拉纳边缘模(chiral Majorana edge modes)与切尔诺数无关,但目前实现这一特点的理论和实验努力仍然不足。在此,我们提出了一种新方案,即在磁性拓扑绝缘体-超导体三明治结构中联合调谐动态驱动和静态参数,以实现这一目标。结构上施加的偏置电压诱导的约瑟夫森相位调制被用作 Floquet 周期驱动。研究发现,两种调谐之间的相互作用能带来比仅调谐动态驱动参数(频率ω或周期τ)更奇特的 Floquet TSC 相位。更重要的是,仅仅调整静态参数(化学势 µ、泽曼场 gz 和近距离诱导超导能隙 ∆b)也能诱发一系列新奇的拓扑相变。特别是,这三种调谐的特征各不相同,源于内在机制和不同外在机制的结合。此外,联合调整 τ 和 µ (gz) 也会产生独特的拓扑相变。所提出的方案应该很容易在实验中实现,从而大大丰富弗洛凯反常 TSC 相家族。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Anomalies-Rich Floquet Superconductivities Induced by Joint Modulation of Dynamic Driving and Static Parameters
Current theoretical and experimental endeavors to realize an anomalous Floquet chiral topological superconductor (TSC), which is characterized by chiral Majorana edge modes independent of the Chern number, remain insufficient. Herein, we propose a new scheme that involves jointly tuning dynamic driving and static parameters within a magnetic topological insulator-superconductor sandwich structure to achieve this goal. The Josephson phase modulation induced by an applied bias voltage across the structure is utilized as a Floquet periodic drive. It is found that the interplay between the two kinds of tunings can bring about a lot more exotic Floquet TSC phases than those caused by only tuning the dynamic driving parameter (frequency ω or period τ). More importantly, just tuning static parameters (the chemical potential µ, Zeeman field gz, and proximity-induced superconducting energy gap ∆b) also can induce a series of novel topological phase transitions. Particularly, the features in the context of the three tunings are different from each other, originating from the combination of intrinsic and different extrinsic mechanisms. In addition, jointly tuning τ and µ (gz) can have its own unique TSC phases. The proposed scheme should be readily accessible in experiments, and thus the family of anomalous Floquet TSC phases may be considerably enriched.
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