Zhou Y, Wu M W
J Phys Condens Matter. 2014 Feb 12;26(6):065801. doi: 10.1088/0953-8984/26/6/065801.
We investigate the Majorana fermions in a T-shaped semiconductor nanostructure with the Rashba spin-orbit coupling and a magnetic field in the proximity of an s-wave superconductor. It is found that the properties of the low-energy modes (including the Majorana and near-zero-energy modes) at the ends of this system are similar to those in the Majorana nanowire. However, very distinct from the nanowire, one Majorana mode emerges at the intersection of the T-shaped structure when the number of the low-energy modes at each end N is odd, whereas neither Majorana nor near-zero-energy mode appears at the intersection for even N. We also discover that the intersection Majorana mode plays an important role in the transport through the above T-shaped nanostructure with each end connected with a normal lead. Due to the presence of the intersection mode, the deviation of the zero-bias conductance from the ideal value in the long-arm limit Ne2/h is more pronounced in the regime of odd N compared to the one of even N. Furthermore, when the magnetic field increases from the regime of odd N to the one of even N + 1, the deviation from the ideal value tends to decrease. This behavior is also very distinct from that in a nanowire, where the deviation always tends to increase with the increase of magnetic field.
我们研究了处于s波超导体附近、具有拉什巴自旋轨道耦合和磁场的T形半导体纳米结构中的马约拉纳费米子。结果发现,该系统两端低能模式(包括马约拉纳模式和近零能模式)的性质与马约拉纳纳米线中的相似。然而,与纳米线非常不同的是,当两端的低能模式数量N为奇数时,在T形结构的交叉点会出现一个马约拉纳模式,而当N为偶数时,交叉点既不出现马约拉纳模式也不出现近零能模式。我们还发现,交叉点马约拉纳模式在通过上述两端与正常引线相连的T形纳米结构的输运中起着重要作用。由于交叉点模式的存在,与N为偶数的情况相比,在N为奇数的情况下,零偏置电导与长臂极限Ne2/h下理想值的偏差在奇数N的情况下更为明显。此外,当磁场从奇数N的情况增加到偶数N + 1的情况时,与理想值的偏差趋于减小。这种行为也与纳米线中的行为非常不同,在纳米线中,偏差总是随着磁场的增加而趋于增大。