Majorana fermions on a disordered triangular lattice

Yaacov E. Kraus, Ady Stern

Research output: Contribution to journalArticlepeer-review

Abstract

Vortices of several condensed matter systems are predicted to have zero-energy core excitations which are Majorana fermions (MFs). These exotic quasi-particles are neutral, massless and expected to have non-Abelian statistics. Furthermore, they make the ground state of the system highly degenerate. For a large density of vortices, an Abrikosov lattice is formed, and tunneling of MFs between vortices removes the energy degeneracy. In particular, the spectrum of MFs in a triangular lattice is gapped, and the Hamiltonian that describes such a system is antisymmetric under time reversal. We consider MFs on a disordered triangular lattice. We found that even for very weak disorder in the location of the vortices localized sub-gap modes appear. As the disorder becomes strong, a percolation phase transition takes place, and the gap is fully closed by extended states. The mechanism underlying these phenomena is domain walls between two time-reversed phases, which are created by flipping the sign of the tunneling matrix elements. The density of states in the disordered lattice seems to diverge at zero energy.

Original languageEnglish
Article number105006
JournalNew Journal of Physics
Volume13
DOIs
StatePublished - Oct 2011

All Science Journal Classification (ASJC) codes

  • General Physics and Astronomy

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