Localization-protected order in spin chains with non-Abelian discrete symmetries
arXiv:1706.00022 · doi:10.1103/PhysRevB.98.064203
Abstract
We study the non-equilibrium phase structure of the three-state random quantum Potts model in one dimension. This spin chain is characterized by a non-Abelian symmetry recently argued to be incompatible with the existence of a symmetry-preserving many-body localized (MBL) phase. Using exact diagonalization and a finite-size scaling analysis, we find that the model supports two distinct broken-symmetry MBL phases at strong disorder that either break the clock symmetry or a chiral symmetry. In a dual formulation, our results indicate the existence of a stable finite-temperature topological phase with MBL-protected parafermionic end zero modes. While we find a thermal symmetry-preserving regime for weak disorder, scaling analysis at strong disorder points to an infinite-randomness critical point between two distinct broken-symmetry MBL phases.
5 pages, 3 figures main text; 6 pages, 3 figures supplemental material; Version 2 includes a corrected the form of the chiral order parameter, and corresponding data, as well as larger system size numerics, with no change to the phase structure
References in corpus (13)
- Many body localization and thermalization in quantum statistical mechanics
- Localization of interacting fermions at high temperature
- Many-body localization edge in the random-field Heisenberg chain
- Stability and instability towards delocalization in MBL systems
- Symmetry constraints on many-body localization
- Quantum criticality of hot random spin chains
- Stability of zero modes in parafermion chains
- Many-Body Localization: Stability and Instability
- Eigenstate phase transitions and the emergence of universal dynamics in highly excited states
- Criticality in Translation-Invariant Parafermion Chains
- Eigenstate phases with finite on-site non-Abelian symmetry
- Many-Body Localization of Symmetry Protected Topological States
- Universal crossover from ground state to excited-state quantum criticality
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