Publication:
Spin-resolved Andreev levels and parity crossings in hybrid superconductor–semiconductor nanostructures

Thumbnail Image

Date

2013

Published Version

Journal Title

Journal ISSN

Volume Title

Publisher

Nature Publishing Group
The Harvard community has made this article openly available. Please share how this access benefits you.

Research Projects

Organizational Units

Journal Issue

Citation

Lee, Eduardo J. H., Xiaocheng Jiang, Manuel Houzet, Ramón Aguado, Charles M. Lieber, and Silvano De Franceschi. 2013. “Spin-Resolved Andreev Levels and Parity Crossings in Hybrid Superconductor–semiconductor Nanostructures.” Nature Nanotechnology 9 (1) (December 15): 79–84. doi:10.1038/nnano.2013.267.

Research Data

Abstract

The physics and operating principles of hybrid superconductor–semiconductor devices rest ultimately on the magnetic properties of their elementary subgap excitations, usually called Andreev levels. Here we report a direct measurement of the Zeeman effect on the Andreev levels of a semiconductor quantum dot with large electron g-factor, strongly coupled to a conventional superconductor with a large critical magnetic field. This material combination allows spin degeneracy to be lifted without destroying superconductivity. We show that a spin-split Andreev level crossing the Fermi energy results in a quantum phase transition to a spin-polarized state, which implies a change in the fermionic parity of the system. This crossing manifests itself as a zero-bias conductance anomaly at finite magnetic field with properties that resemble those expected for Majorana modes in a topological superconductor. Although this resemblance is understood without evoking topological superconductivity, the observed parity transitions could be regarded as precursors of Majorana modes in the long-wire limit.

Description

Keywords

Terms of Use

This article is made available under the terms and conditions applicable to Other Posted Material (LAA), as set forth at Terms of Service

Endorsement

Review

Supplemented By

Referenced By

Related Stories