Differential current noise as an identifier of Andreev bound states that induce nearly quantized conductance plateaus
arXiv:2301.06451 · doi:10.1103/PhysRevB.108.L121407
Abstract
Quantized conductance plateaus, a celebrated hallmark of Majorana bound states (MBSs) predicted a decade ago, have recently been observed with small deviations in iron-based superconductors and hybrid nanowires. Here, we demonstrate that nearly quantized conductance plateaus can also arise from trivial Andreev bound states (ABSs). To avoid ABS interruptions, we propose identifying ABS-induced quantized conductance plateaus by measuring the associated differential current noise versus bias voltage . Specifically, for a quantized conductance plateau induced by one or multiple low-energy ABSs, the associated curve exhibits a double-peak around zero bias, with the peak positions at (where is the temperature) and peak values larger than . These features greatly contrast those of an MBS or quasi-MBS, whose curve displays a broad zero-bias dip and is consistently below . This protocol can be practically implemented in a variety of MBS candidate platforms using an electrode or STM tip as a probe.
7 pages, 5 figures, and 1 table in the main text; 12 pages, 11 figures, and 4 tables in the Supplemental Material
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