约瑟夫森效应
凝聚态物理
物理
石墨烯
极化(电化学)
皮约瑟夫森结
超导电性
相变
库珀对
圆极化
波矢
量子力学
化学
磁场
物理化学
作者
Renxiang 任翔 Cheng 程,Miao 苗 Yu 于,Hong 洪 Wang 汪,Deliang 德亮 Cao 曹,Xingao 兴鳌 Li 李,Fenghua 凤华 Qi 戚,Xingfei 兴飞 Zhou 周
标识
DOI:10.1088/1674-1056/ad04c5
摘要
We investigate the chiral edge states-induced Josephson current–phase relation in a graphene-based Josephson junction modulated by the off-resonant circularly polarized light and the staggered sublattice potential. By solving the Bogoliubov–de Gennes equation, a φ 0 Josephson junction is induced in the coaction of the off-resonant circularly polarized light and the staggered sublattice potential, which arises from the fact that the center of-mass wave vector of Cooper pair becomes finite and the opposite center of-mass wave vector to compensate is lacking in the nonsuperconducting region. Interestingly, when the direction of polarization of light is changed, − φ 0 to φ 0 transition generates, which generalizes the concept of traditional 0– π transition. Our findings provide a purely optical way to manipulate a phase-controllable Josephson device and guidelines for future experiments to confirm the presence of graphene-based φ 0 Josephson junction.
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