Abstract In this paper we explore how non trivial boundary conditions could influence the entanglement entropy in a topological order in 2+1 dimensions. Specifically we consider the special class of topological orders describable by the quantum double. We will find very interesting dependence of the entanglement entropy on the boundary conditions particularly when the system is non-Abelian. Along the way, we demonstrate a streamlined procedure to compute the entanglement entropy, which is particularly efficient when dealing with systems with boundaries. We also show how this method efficiently reproduces all the known results in the presence of anyonic excitations
AbstractWe present a number of explicit calculations of Renyi and entanglement entropies in situatio...
We formulate a universal characterization of the many-particle quantum entanglement in the ground st...
Entanglement entropy provides a powerful characterization of two-dimensional gapped topolog- ical ph...
Abstract In this paper, we study gapped edges/interfaces in a 2+1 dimensional bosonic topological or...
Abstract We study the entanglement entropy between (possibly distinct) topological phases across an ...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
Entanglement measures find frequent application in the study of topologically ordered systems, where...
We study the change in topological entanglement entropy that occurs when a two-dimensional system in...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
We study the change in topological entanglement entropy that occurs when a two-dimensional system in...
We evaluate the entanglement entropy of exactly solvable Hamiltonians corresponding to general famil...
We investigate bipartite entanglement in spin-1/2 systems on a generic lattice. For states that are ...
We present a number of explicit calculations of Renyi and entanglement entropies in situations where...
We study the symmetry-protected topological (SPT) orders for bosonic systems from an information-the...
AbstractWe present a number of explicit calculations of Renyi and entanglement entropies in situatio...
We formulate a universal characterization of the many-particle quantum entanglement in the ground st...
Entanglement entropy provides a powerful characterization of two-dimensional gapped topolog- ical ph...
Abstract In this paper, we study gapped edges/interfaces in a 2+1 dimensional bosonic topological or...
Abstract We study the entanglement entropy between (possibly distinct) topological phases across an ...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
Entanglement measures find frequent application in the study of topologically ordered systems, where...
We study the change in topological entanglement entropy that occurs when a two-dimensional system in...
Quantum systems with short-range interactions are known to respect an area law for the entanglement ...
We study the change in topological entanglement entropy that occurs when a two-dimensional system in...
We evaluate the entanglement entropy of exactly solvable Hamiltonians corresponding to general famil...
We investigate bipartite entanglement in spin-1/2 systems on a generic lattice. For states that are ...
We present a number of explicit calculations of Renyi and entanglement entropies in situations where...
We study the symmetry-protected topological (SPT) orders for bosonic systems from an information-the...
AbstractWe present a number of explicit calculations of Renyi and entanglement entropies in situatio...
We formulate a universal characterization of the many-particle quantum entanglement in the ground st...
Entanglement entropy provides a powerful characterization of two-dimensional gapped topolog- ical ph...