Majorana Fermions in Equilibrium and Driven Cold Atom Quantum Wires
Quantum Gases
2013-07-09 v2 Quantum Physics
Abstract
We introduce a new approach to create and detect Majorana fermions using optically trapped 1D fermionic atoms. In our proposed setup, two internal states of the atoms couple via an optical Raman transition---simultaneously inducing an effective spin-orbit interaction and magnetic field---while a background molecular BEC cloud generates s-wave pairing for the atoms. The resulting cold atom quantum wire supports Majorana fermions at phase boundaries between topologically trivial and nontrivial regions, as well as `Floquet Majorana fermions' when the system is periodically driven. We analyze experimental parameters, detection schemes, and various imperfections.
Keywords
Cite
@article{arxiv.1102.5367,
title = {Majorana Fermions in Equilibrium and Driven Cold Atom Quantum Wires},
author = {Liang Jiang and Takuya Kitagawa and Jason Alicea and A. R. Akhmerov and David Pekker and Gil Refael and J. Ignacio Cirac and Eugene Demler and Mikhail D. Lukin and Peter Zoller},
journal= {arXiv preprint arXiv:1102.5367},
year = {2013}
}
Comments
4 pages, 3 figures; references added