Topological phases with parafermions: theory and blueprints
Abstract
We concisely review the recent evolution in the study of parafermions -- exotic emergent excitations that generalize Majorana fermions and similarly underpin a host of novel phenomena. First we illustrate the intimate connection between Z_3-symmetric "spin" chains and one-dimensional parafermion lattice models, highlighting how the latter host a topological phase featuring protected edge zero modes. We then tour several blueprints for the laboratory realization of parafermion zero modes -- focusing on quantum Hall/superconductor hybrids, quantum Hall bilayers, and two-dimensional topological insulators -- and describe striking experimental fingerprints that they provide. Finally, we discuss how coupled parafermion arrays in quantum Hall architectures yield topological phases that potentially furnish hardware for a universal, intrinsically decoherence-free quantum computer.
Keywords
Cite
@article{arxiv.1504.02476,
title = {Topological phases with parafermions: theory and blueprints},
author = {Jason Alicea and Paul Fendley},
journal= {arXiv preprint arXiv:1504.02476},
year = {2016}
}
Comments
14 pages, 4 figures; slated for Annual Reviews of Condensed Matter Physics