Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, local Hamiltonians in which global characteristics of a quantum state are encoded in properties of local tensors. We develop a framework to describe onsite symmetries, as occurring in systems exhibiting symmetry-protected topological (SPT) quantum order, in terms of virtual symmetries of the local tensors expressed as a set of matrix product operators (MPOs) labeled by distinct group elements. These MPOs describe the possibly anomalous symmetry of the edge theory, whose local degrees of freedom are concretely identified in a PEPS. A classification of SPT phases is obtained by studying the obstructions to continuously deforming one set of MPOs in...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
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...
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...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
We give a classification of gapped quantum phases of one-dimensional systems in the framework of mat...
We give a classification of gapped quantum phases of one-dimensional systems in the framework of mat...
The theory of entanglement provides a fundamentally new language for describing interactions and cor...
We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected ...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
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...
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...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
Edge theories of symmetry-protected topological phases are well known to possess global symmetry ano...
We give a classification of gapped quantum phases of one-dimensional systems in the framework of mat...
We give a classification of gapped quantum phases of one-dimensional systems in the framework of mat...
The theory of entanglement provides a fundamentally new language for describing interactions and cor...
We provide a description of virtual non-local matrix product operator (MPO) symmetries in projected ...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...