物理
束缚态
马约拉纳
电导
光谱(功能分析)
噪音(视频)
量子力学
差速器(机械装置)
电流(流体)
超导电性
凝聚态物理
计算机科学
热力学
图像(数学)
人工智能
作者
Huajin Zhao,Junrong Wang,Hong Mao,Jinshuang Jin
标识
DOI:10.1088/1367-2630/ada9ab
摘要
Abstract We investigate the quantum transport through a quantum dot coupled with a superconducting (SC) nanowire. By elaborating the differential conductance and current noise spectrum, we focus on the distinct characteristics of the topological Majorana bound states (MBSs) and trivial Andereev bound states (ABSs) hosted in SC wire. For MBSs with a topological quality factor q = 1, we observe the degenerate features manifested as the zero-bias peak (ZBP) in differential conductance and the Rabi dips degeneracy (RDD) in noise spectrum. In contrast, for ABSs with q < 1, the splitting of these degenerate features depends on the linewidth, arising from realistic measurement conditions. Furthermore, we identify the critical quality factors q c and q S associated with the emergences of ZBP and RDD, respectively. The value of q c is temperature-dependent, and we establish a suitable temperature window to ensure the visibility of single ZBP in the experiments. Whereas, q c depends on the coupling strength rather than the temperature. Typical values for these quality factors are approximately q c ≈ 0.93 and q S ≈ 0.99 . Our results suggest that the degenerate Rabi spectrum signal could serve as a hallmark for the presence of MBSs, which goes beyond the scope of differential conductance.
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