Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations

In this thesis we examine methods for measuring entanglement entropy in spin-1/2 Heisenberg systems using quantum Monte Carlo in the valence bond basis. We begin by presenting the quantum Monte Carlo techniques used in this research. We then use these techniques to directly compare the recently pr...

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Main Author: Kallin, Ann Berlinsky
Language:en
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10012/5651
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-56512013-10-04T04:10:13ZKallin, Ann Berlinsky2010-12-08T15:27:18Z2010-12-08T15:27:18Z2010-12-08T15:27:18Z2010http://hdl.handle.net/10012/5651In this thesis we examine methods for measuring entanglement entropy in spin-1/2 Heisenberg systems using quantum Monte Carlo in the valence bond basis. We begin by presenting the quantum Monte Carlo techniques used in this research. We then use these techniques to directly compare the recently proposed valence bond entanglement entropy to the standard definition of entanglement entropy: the von Neumann entanglement entropy. We find that the valence bond entanglement entropy does not give a bound on the von Neumann entanglement entropy, and that it exhibits a multiplicative logarithmic correction to the area law that is not present in the scaling of the von Neumann entanglement entropy. We then present a method to measure higher orders of the generalized Renyi entanglement entropies using valence bond quantum Monte Carlo, and show results for the second Renyi entropy. We find the results converge to the exact results for one dimensional Heisenberg spin-1/2 chains, and see that the scaling of the second Renyi entropy follows an area law in the two dimensional Heisenberg ground state.enentanglementquantum Monte CarloMeasuring Entanglement Entropy in Valence Bond Quantum Monte Carlo SimulationsThesis or DissertationPhysics and AstronomyMaster of SciencePhysics
collection NDLTD
language en
sources NDLTD
topic entanglement
quantum Monte Carlo
Physics
spellingShingle entanglement
quantum Monte Carlo
Physics
Kallin, Ann Berlinsky
Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
description In this thesis we examine methods for measuring entanglement entropy in spin-1/2 Heisenberg systems using quantum Monte Carlo in the valence bond basis. We begin by presenting the quantum Monte Carlo techniques used in this research. We then use these techniques to directly compare the recently proposed valence bond entanglement entropy to the standard definition of entanglement entropy: the von Neumann entanglement entropy. We find that the valence bond entanglement entropy does not give a bound on the von Neumann entanglement entropy, and that it exhibits a multiplicative logarithmic correction to the area law that is not present in the scaling of the von Neumann entanglement entropy. We then present a method to measure higher orders of the generalized Renyi entanglement entropies using valence bond quantum Monte Carlo, and show results for the second Renyi entropy. We find the results converge to the exact results for one dimensional Heisenberg spin-1/2 chains, and see that the scaling of the second Renyi entropy follows an area law in the two dimensional Heisenberg ground state.
author Kallin, Ann Berlinsky
author_facet Kallin, Ann Berlinsky
author_sort Kallin, Ann Berlinsky
title Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
title_short Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
title_full Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
title_fullStr Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
title_full_unstemmed Measuring Entanglement Entropy in Valence Bond Quantum Monte Carlo Simulations
title_sort measuring entanglement entropy in valence bond quantum monte carlo simulations
publishDate 2010
url http://hdl.handle.net/10012/5651
work_keys_str_mv AT kallinannberlinsky measuringentanglemententropyinvalencebondquantummontecarlosimulations
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