Gong Wei-Jiang, Gao Zhen, Shan Wan-Fei, Yi Guang-Yu
College of Sciences, Northeastern University, Shenyang 110819, China.
Sci Rep. 2016 Mar 14;6:23033. doi: 10.1038/srep23033.
One Majorana doublet can be realized at each end of the time-reversal-invariant Majorana nanowires. We investigate the Josephson effect in the Majorana-doublet-presented junction modified by different inter-doublet coupling manners. It is found that when the Majorana doublets couple indirectly via a non-magnetic quantum dot, only the normal Josephson effect occurs, and the fermion parity in the system just affects the current direction and amplitude. However, one magnetic field applied on the dot can induce the fractional Josephson effect in the odd-parity case. Next if the direct and indirect couplings between the Majorana doublets coexist, no fractional Josephson effect takes place, regardless of the presence of magnetic field. Instead, there almost appears the π-period-like current in some special cases. All the results are clarified by analyzing the influence of the fermion occupation in the quantum dot on the parity conservation in the whole system. We ascertain that this work will be helpful for describing the dot-assisted Josephson effect between the Majorana doublets.
在时间反演不变的马约拉纳纳米线的每一端都可以实现一个马约拉纳双重态。我们研究了由不同双重态间耦合方式修饰的存在马约拉纳双重态的结中的约瑟夫森效应。研究发现,当马约拉纳双重态通过一个非磁性量子点间接耦合时,仅会出现正常约瑟夫森效应,且系统中的费米子宇称仅影响电流方向和幅度。然而,施加在量子点上的一个磁场可在奇宇称情况下诱导出分数约瑟夫森效应。接下来,如果马约拉纳双重态之间的直接和间接耦合共存,无论是否存在磁场,都不会发生分数约瑟夫森效应。相反,在某些特殊情况下几乎会出现π周期状电流。通过分析量子点中的费米子占据情况对整个系统中宇称守恒的影响,所有结果都得到了阐明。我们确定这项工作将有助于描述马约拉纳双重态之间的量子点辅助约瑟夫森效应。