铁磁骰晶格中大质量伪ospin-1 费米子的约瑟夫森效应

IF 3 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Zixuan Ding , Donghao Wang , Liangliang Lu , Mengyao Li , Yongchun Tao , Fengliang Huang
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引用次数: 0

摘要

我们从理论上研究了基于骰子晶格的超导体/铁磁体/超导体(S/F/S)结中大质量伪ospin-1费米子的约瑟夫森效应,其中包括量级为m的Sz型和+U型质量项。研究发现,对于Sz型费米子,在没有铁磁交换场h的情况下,超电流会受到m或结长度L的有效抑制。在掺杂的情况下,对应于非零 EF,m 诱导的状态转变可能会在较大的 h 或 L 下消失。随着 EF 的增加,m 导致的抑制作用在较小的 h 下减弱,而在较大的 h 下增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Josephson effect of massive pseudospin-1 fermions in the ferromagnetic dice lattice
We theoretically study the Josephson effect of massive pseudospin-1 fermions in a superconductor/ferromagnet/superconductor (S/F/S) junction based on the dice lattice, including Sz- and +U-type mass terms with the magnitude m. For the Sz-type fermions, it is found that, in the absence of ferromagnetic exchange field h, the supercurrent is effectively inhibited by m or the junction length L. In the presence of h, 0π state transition can be realized by modulating h, m, or L. The m-induced state transition occurs more frequently for a larger h or L. Particularly, the inhibition of supercurrent caused by m still remains for a large m. In the doping case, corresponding to a nonzero EF, the m-induced state transition may disappear for a large h or L. With EF increased, the inhibition caused by m diminishes for a small h whereas intensifies for a large h. In addition, the supercurrent features for the +U-type fermions distinct from those for the Sz-type fermions are demonstrated.
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来源期刊
Annals of Physics
Annals of Physics 物理-物理:综合
CiteScore
5.30
自引率
3.30%
发文量
211
审稿时长
47 days
期刊介绍: Annals of Physics presents original work in all areas of basic theoretic physics research. Ideas are developed and fully explored, and thorough treatment is given to first principles and ultimate applications. Annals of Physics emphasizes clarity and intelligibility in the articles it publishes, thus making them as accessible as possible. Readers familiar with recent developments in the field are provided with sufficient detail and background to follow the arguments and understand their significance. The Editors of the journal cover all fields of theoretical physics. Articles published in the journal are typically longer than 20 pages.
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