Matrix product operator symmetries and intertwiners in string-nets with domain walls

We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected entangled pair state (PEPS) representations of string-net models. Given such a PEPS representation, we show that the consistency conditions of its MPO symmetries amount to a set of six coupled equ...

Full description

Bibliographic Details
Main Author: Laurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank Verstraete
Format: Article
Language:English
Published: SciPost 2021-03-01
Series:SciPost Physics
Online Access:https://scipost.org/SciPostPhys.10.3.053
id doaj-28abd8c3ddfb4932b3e721e272a4f229
record_format Article
spelling doaj-28abd8c3ddfb4932b3e721e272a4f2292021-04-19T12:45:10ZengSciPostSciPost Physics2542-46532021-03-0110305310.21468/SciPostPhys.10.3.053Matrix product operator symmetries and intertwiners in string-nets with domain wallsLaurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank VerstraeteWe provide a description of virtual non-local matrix product operator (MPO) symmetries in projected entangled pair state (PEPS) representations of string-net models. Given such a PEPS representation, we show that the consistency conditions of its MPO symmetries amount to a set of six coupled equations that can be identified with the pentagon equations of a bimodule category. This allows us to classify all equivalent PEPS representations and build MPO intertwiners between them, synthesising and generalising the wide variety of tensor network representations of topological phases. Furthermore, we use this generalisation to build explicit PEPS realisations of domain walls between different topological phases as constructed by Kitaev and Kong [Commun. Math. Phys. 313 (2012) 351-373]. While the prevailing abstract categorical approach is sufficient to describe the structure of topological phases, explicit tensor network representations are required to simulate these systems on a computer, such as needed for calculating thresholds of quantum error-correcting codes based on string-nets with boundaries. Finally, we show that all these string-net PEPS representations can be understood as specific instances of Turaev-Viro state-sum models of topological field theory on three-manifolds with a physical boundary, thereby putting these tensor network constructions on a mathematically rigorous footing.https://scipost.org/SciPostPhys.10.3.053
collection DOAJ
language English
format Article
sources DOAJ
author Laurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank Verstraete
spellingShingle Laurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank Verstraete
Matrix product operator symmetries and intertwiners in string-nets with domain walls
SciPost Physics
author_facet Laurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank Verstraete
author_sort Laurens Lootens, Jürgen Fuchs, Jutho Haegeman, Christoph Schweigert, Frank Verstraete
title Matrix product operator symmetries and intertwiners in string-nets with domain walls
title_short Matrix product operator symmetries and intertwiners in string-nets with domain walls
title_full Matrix product operator symmetries and intertwiners in string-nets with domain walls
title_fullStr Matrix product operator symmetries and intertwiners in string-nets with domain walls
title_full_unstemmed Matrix product operator symmetries and intertwiners in string-nets with domain walls
title_sort matrix product operator symmetries and intertwiners in string-nets with domain walls
publisher SciPost
series SciPost Physics
issn 2542-4653
publishDate 2021-03-01
description We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected entangled pair state (PEPS) representations of string-net models. Given such a PEPS representation, we show that the consistency conditions of its MPO symmetries amount to a set of six coupled equations that can be identified with the pentagon equations of a bimodule category. This allows us to classify all equivalent PEPS representations and build MPO intertwiners between them, synthesising and generalising the wide variety of tensor network representations of topological phases. Furthermore, we use this generalisation to build explicit PEPS realisations of domain walls between different topological phases as constructed by Kitaev and Kong [Commun. Math. Phys. 313 (2012) 351-373]. While the prevailing abstract categorical approach is sufficient to describe the structure of topological phases, explicit tensor network representations are required to simulate these systems on a computer, such as needed for calculating thresholds of quantum error-correcting codes based on string-nets with boundaries. Finally, we show that all these string-net PEPS representations can be understood as specific instances of Turaev-Viro state-sum models of topological field theory on three-manifolds with a physical boundary, thereby putting these tensor network constructions on a mathematically rigorous footing.
url https://scipost.org/SciPostPhys.10.3.053
work_keys_str_mv AT laurenslootensjurgenfuchsjuthohaegemanchristophschweigertfrankverstraete matrixproductoperatorsymmetriesandintertwinersinstringnetswithdomainwalls
_version_ 1721521156308074496