Modeling electron fractionalization with unconventional Fock spaces
arXiv:1410.5824 · doi:10.1088/1361-648X/aa718f
Abstract
It is shown that certain fractionally-charged quasiparticles can be modeled on \(D-\)dimensional lattices in terms of unconventional yet simple Fock algebras of creation and annihilation operators. These unconventional Fock algebras are derived from the usual fermionic algebra by taking roots (the square root, cubic root, etc.) of the usual fermionic creation and annihilation operators. If the fermions carry non-Abelian charges, then this approach fractionalizes the Abelian charges only. In particular, the \(m\)th-root of a spinful fermion carries charge \(e/m\) and spin \(1/2\). Just like taking a root of a complex number, taking a root of a fermion yields a mildly non-unique result. As a consequence, there are several possible choices of quantum exchange statistics for fermion-root quasiparticles. These choices are tied to the dimensionality \(D=1,2,3,\dots\) of the lattice by basic physical considerations. One particular family of fermion-root quasiparticles is directly connected to the parafermion zero-energy modes expected to emerge in certain mesoscopic devices involving fractional quantum Hall states. Hence, as an application of potential mesoscopic interest, I investigate numerically the hybridization of Majorana and parafermion zero-energy edge modes caused by fractionalizing but charge-conserving tunneling.
16 pages, 1 figure. Former Title: "Quasiparticle excitations of fractionalizing media with non-Abelian symmetries"
References in corpus (11)
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Exotic non-Abelian anyons from conventional fractional quantum Hall states
- Universal topological quantum computation from a superconductor/Abelian quantum Hall heterostructure
- Topological phases with parafermions: theory and blueprints
- Genons, twist defects, and projective non-Abelian braiding statistics
- Fractionalizing Majorana fermions: non-abelian statistics on the edges of abelian quantum Hall states
- Superconducting Proximity Effect on the Edge of Fractional Topological Insulators
- Fractional topological superconductors with fractionalized Majorana fermions
- Fock Parafermions and Self-Dual Representations of the Braid Group
- Reflection Positivity for Parafermions
- Changing anyonic ground degeneracy with engineered gauge fields