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Topological Quantum Computing

Study of anyon condensation and topological phase transitions from a mathbb{Z}4 topological phase using Projected Entangled Pair States

arXiv
Authors: Mohsin Iqbal, Kasper Duivenvoorden, Norbert Schuch

Year

2017

Paper ID

24575

Status

Preprint

Abstract Read

~2 min

Abstract Words

127

Citations

N/A

Abstract

We use Projected Entangled Pair States (PEPS) to study topological quantum phase transitions. The local description of topological order in the PEPS formalism allows us to set up order parameters which measure condensation and deconfinement of anyons, and serve as a substitute for conventional order parameters. We apply these order parameters, together with anyon-anyon correlation functions and some further probes, to characterize topological phases and phase transitions within a family of models based on a mathbb Z4 symmetry, which contains mathbb Z4 quantum double, toric code, double semion, and trivial phases. We find a diverse phase diagram which exhibits a variety of different phase transitions of both first and second order which we comprehensively characterize, including direct transitions between the toric code and the double semion phase.

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  • This paper contributes to the Topological Quantum Computing research area in the Quantum Articles archive.
  • It adds a 2017 reference point for readers tracking recent quantum research.
  • We use Projected Entangled Pair States (PEPS) to study topological quantum phase transitions.

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Current Paper #24575 #69030 Non-Hermitian Crystalline Braid... #69015 Complex-gauge control of anomal...

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