Complete characterization of non-Abelian topological phase transitions and detection of anyon splitting with projected entangled pair states
Wen-Tao Xu, Jose Garre-Rubio, and Norbert Schuch

TL;DR
This paper develops a comprehensive framework using projected entangled pair states (PEPS) to characterize non-Abelian topological phase transitions, revealing phenomena like anyon splitting and partial condensation with practical detection methods.
Contribution
It introduces a novel PEPS-based approach to detect and analyze complex phenomena such as anyon splitting, partial condensation, and deconfinement in non-Abelian topological phase transitions.
Findings
Anyon splitting can be observed from ground state degeneracies.
A set of PEPS describes all degrees of freedom of a non-Abelian anyon.
An order parameter for detecting anyon splitting is constructed.
Abstract
It is well-known that many topological phase transitions of intrinsic Abelian topological phases are accompanied by condensation and confinement of anyons. However, for non-Abelian topological phases, more intricate phenomena can occur at their phase transitions, because the multiple degenerate degrees of freedom of a non-Abelian anyon can change in different ways after phase transitions. In this paper, we study these new phenomena, including partial condensation, partial deconfinement and especially anyon splitting (a non-Abelian anyon splits into different kinds of the new anyon species) using projected entangled pair states (PEPS). First, we show that anyon splitting can be observed from the topologically degenerate ground states. Next, we construct a set of PEPS describing all possible degrees of freedom of the same non-Abelian anyon. From the overlaps of this set of PEPS of a given…
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Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Quantum Information and Cryptography · Quantum and electron transport phenomena
