English

Detecting Majoranas in 1D wires by charge sensing

Mesoscale and Nanoscale Physics 2015-01-14 v1

Abstract

The electron number-parity of the ground state of a semiconductor narowire proximity-coupled to a bulk superconductor can alternate between the quantised values ±1\pm 1 if parameters such as the wire length LL, the chemical potential μ\mu or the magnetic field BB are varied inside the topological superconductor phase. % The parity jumps, which may be interpreted as changes in the occupancy of the fermion state formed from the pair of Majorana modes at opposite ends of the wire, are accompanied by jumps δN\delta N in the charge of the nanowire, whose values decrease exponentially with the wire length. % We study theoretically the dependence of δN\delta N on system parameters, and compare the locations in the μ\mu-BB plane of parity jumps when the nanowire is or is not proximity-coupled to a bulk superconductor. % We show that, despite the fact that the wave functions of the Majorana modes are localised near the two ends of the wire, the charge-density jumps have spatial distributions that are essentially uniform along the wire length, being proportional to the product of the two Majorana wave functions. % We explain how charge measurements, say by an external single-electron transistor, could reveal these effects. % Whereas existing experimental methods require direct contact to the wire for tunneling measurements, charge sensing avoids this issue and provides an orthogonal measurement to confirm recent experimental developments. % Furthermore, by comparing density of states measurements which show Majorana features at the wire ends with the uniformly-distributed charge measurements, one can rule out alternative explanations for earlier results. % We shed light on a new parameter regime for these wire-superconductor hybrid systems, and propose a related experiment to measure spin density.

Keywords

Cite

@article{arxiv.1406.5172,
  title  = {Detecting Majoranas in 1D wires by charge sensing},
  author = {Gilad Ben-Shach and Arbel Haim and Ian Appelbaum and Yuval Oreg and Amir Yacoby and Bertrand I. Halperin},
  journal= {arXiv preprint arXiv:1406.5172},
  year   = {2015}
}
R2 v1 2026-06-22T04:42:42.245Z