Soft superconducting gap in semiconductor-based Majorana nanowires
Tudor D. Stanescu, Roman M. Lutchyn, S. Das Sarma
DOI 10.1103/PhysRevB.90.085302 · Physical Review B
Active bibliographic source — not scientific approval
Bibliographic access preserves source history; it does not approve extracted materials or validate reported claims. Review warnings on each occurrence separately.
Abstract
We develop a theory for the proximity effect in superconductor–semiconductor–normal-metal tunneling structures, which have recently been extensively studied experimentally, leading to the observation of transport signatures consistent with the predicted zero-energy Majorana bound states. We show that our model for the semiconductor nanowire having multiple occupied subbands with different transmission probabilities through the barrier reproduces the observed “soft-gap” behavior associated with substantial subgap tunneling conductance. We study the manifestations of the soft-gap phenomenon both in the tunneling conductance and in local density of states measurements and discuss the correlations between these two quantities. We emphasize that the proximity effect associated with the hybridization between low-lying states in the multiband semiconductor and the normal-metal states in the lead is an intrinsic effect leading to the soft-gap problem. In addition to the intrinsic contribution, there may be extrinsic effects, such as, for example, interface disorder, exacerbating the soft-gap problem. Our work establishes the generic possibility of an ubiquitous presence of an intrinsic soft gap in the superconductor–semiconductor–normal-metal tunneling transport conductance induced by the inverse proximity effect of the normal metal.
Similar papers
Soft Superconducting Gap in Semiconductor Majorana Nanowires
similarity 0.96So Takei et al.
Source status unknown — claims are unverified
Soft superconducting gap in semiconductor-based Majorana nanowires
similarity 0.94Tudor D. Stanescu et al. · 2013 · arXiv:1311.2075
Source status unknown — claims are unverified
Effects of large induced superconducting gap on semiconductor Majorana nanowires
similarity 0.94William S. Cole et al.
Source status unknown — claims are unverified
Soft Superconducting Gap in Semiconductor Majorana Nanowires
similarity 0.93So Takei et al. · 2012 · arXiv:1211.1029
Source status unknown — claims are unverified
Proximity-induced low-energy renormalization in hybrid semiconductor-superconductor Majorana structures
similarity 0.93Tudor D. Stanescu & Sankar Das Sarma · 2017 · arXiv:1702.03976
Source status unknown — claims are unverified
Tunneling transport in NSN junctions made of Majorana nanowires across the topological quantum phase transition
similarity 0.92Alejandro M. Lobos & S. Das Sarma · 2014 · arXiv:1407.0694
Source status unknown — claims are unverified