Characterization of Intrinsically Fermionic Topological Phases in Majorana-Dimer models

ORAL

Abstract

In this talk, we explore an exactly solvable model of resonating dimers decorated with Majorana modes. The model realizes an intriguing Ising-like topological order yet possesses a fully gapped edge--a possibility that is unique to fermions and has no analogue in bosonic systems. Based on an analysis of fermion-parity defects and fermion-parity twisted boundary conditions, we argue that this phase can be described as the product of a chiral Ising theory and a topological $p_x - ip_y$ superconductor. We also discuss an eight-fold hierarchy of such phases and show how to unambiguously determine the topological order in numerical calculations using modular transformations of minimally entangled ground states on the torus.

Authors

  • Brayden Ware

    University of California - Santa Barbara, Univ of California - Santa Barbara

  • Jun Ho Son

    Stanford Univ, Stanford University

  • Meng Cheng

    Yale University, Department of Physics, Yale University, Department of Physics, Yale University, New Haven, CT 06520-8120, USA

  • Ryan V. Mishmash

    California Institute of Technology, Caltech

  • Jason Alicea

    California Institute of Technology, Caltech

  • Bela Bauer

    Microsoft Station Q