English

Destructive Little-Parks Effect in a Full-Shell Nanowire-based Transmon

Mesoscale and Nanoscale Physics 2021-01-19 v1 Superconductivity

Abstract

A semiconductor transmon with an epitaxial Al shell fully surrounding an InAs nanowire core is investigated in the low EJ/ECE_J/E_C regime. Little-Parks oscillations as a function of flux along the hybrid wire axis are destructive, creating lobes of reentrant superconductivity separated by a metallic state at a half-quantum of applied flux. In the first lobe, phase winding around the shell can induce topological superconductivity in the core. Coherent qubit operation is observed in both the zeroth and first lobes. Splitting of parity bands by coherent single-electron coupling across the junction is not resolved beyond line broadening, placing a bound on Majorana coupling, EM/hE_M/h < 10 MHz, much smaller than the Josephson coupling EJ/hE_J/h ~ 4.7 GHz.

Cite

@article{arxiv.2005.01748,
  title  = {Destructive Little-Parks Effect in a Full-Shell Nanowire-based Transmon},
  author = {Deividas Sabonis and Oscar Erlandsson and Anders Kringhøj and Bernard van Heck and Thorvald W. Larsen and Ivana Petkovic and Peter Krogstrup and Karl D. Petersson and Charles M. Marcus},
  journal= {arXiv preprint arXiv:2005.01748},
  year   = {2021}
}
R2 v1 2026-06-23T15:18:14.749Z