Physics-Uspekhi

Unpaired Majorana fermions in quantum wires

Journal article · 2001 · Cited by 4,777

✓ Free legal copy found

Preprint, hosted by Cornell University (arxiv.org)

This is the authors’ own version from before peer review, so it may differ from the published paper.

Read the free PDF →

Other free copies

Abstract

Certain one-dimensional Fermi systems have an energy gap in the bulk spectrum while boundary states are described by one Majorana operator per boundary point. A finite system of length L possesses two ground states with an energy difference proportional to exp(- L / l 0 ) and different fermionic parities. Such systems can be used as qubits since they are intrinsically immune to decoherence. The property of a system to have boundary Majorana fermions is expressed as a condition on the bulk electron spectrum. The condition is satisfied in the presence of an arbitrary small energy gap induced by proximity of a three-dimensional p-wave superconductor, provided that the normal spectrum has an odd number of Fermi points in each half of the Brillouin zone (each spin component counts separately).

DOI: 10.1070/1063-7869/44/10s/s29 · Publisher: Uspekhi Fizicheskikh Nauk (UFN) Journal

Guides

Find another paper