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 [...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected ...
Matrix Product Operators (MPOs) are tensor networks representing operators acting on 1D systems. The...
One of the most striking features of gapped quantum phases that exhibit topological order is the pre...
One of the most striking features of gapped quantum phases that exhibit topological order is the pre...
Matrix Product Operators (MPOs) are tensor networks representing operators acting on 1D systems. The...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
The theory of entanglement provides a fundamentally new language for describing interactions and cor...
We present a method of extracting information about topological order from the ground state of a str...
We show that general string-net condensed states have a natural representation in terms of tensor pr...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected ...
Matrix Product Operators (MPOs) are tensor networks representing operators acting on 1D systems. The...
One of the most striking features of gapped quantum phases that exhibit topological order is the pre...
One of the most striking features of gapped quantum phases that exhibit topological order is the pre...
Matrix Product Operators (MPOs) are tensor networks representing operators acting on 1D systems. The...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
We study the realization of anyon-permuting symmetries of topological phases on the lattice using te...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
The theory of entanglement provides a fundamentally new language for describing interactions and cor...
We present a method of extracting information about topological order from the ground state of a str...
We show that general string-net condensed states have a natural representation in terms of tensor pr...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...