Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.

The Feynman-Kleinert linearized path integral molecular dynamics (FK-LPI), ring polymer molecular dynamics (RPMD), and centroid molecular dynamics (CMD) methods are applied to the simulation of normal liquid helium. Comparisons of the simulation results at the T = 4 K and rho = 0.01873 A-3 state poi...

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Main Authors: Hone, T, Poulsen, J, Rossky, P, Manolopoulos, D
Format: Journal article
Language:English
Published: 2008
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author Hone, T
Poulsen, J
Rossky, P
Manolopoulos, D
author_facet Hone, T
Poulsen, J
Rossky, P
Manolopoulos, D
author_sort Hone, T
collection OXFORD
description The Feynman-Kleinert linearized path integral molecular dynamics (FK-LPI), ring polymer molecular dynamics (RPMD), and centroid molecular dynamics (CMD) methods are applied to the simulation of normal liquid helium. Comparisons of the simulation results at the T = 4 K and rho = 0.01873 A-3 state point are presented. The calculated quantum correlation functions for the three methods show significant differences, both in the short time and in the intermediate regions of the spectrum. Our simulation results are also compared to the recent results of other approximate quantum simulation methods. We find that FK-LPI qualitatively agrees with other approximate quantum simulation results while CMD and RPMD predict a qualitatively different impulsive rebound in the velocity autocorrelation function. Frequency space analysis reveals that RPMD exhibits a broad high-frequency tail similar to that from quantum mode coupling theory and numerical analytic continuation approaches, while FK-LPI provides a somewhat more rapid decay at high frequency than any of these three methods. CMD manifests a high-frequency component that is greatly reduced compared with the other methods.
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spelling oxford-uuid:dde6ec11-ff66-4fc6-81a1-7fb270309f4c2022-03-27T09:28:12ZComparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dde6ec11-ff66-4fc6-81a1-7fb270309f4cEnglishSymplectic Elements at Oxford2008Hone, TPoulsen, JRossky, PManolopoulos, DThe Feynman-Kleinert linearized path integral molecular dynamics (FK-LPI), ring polymer molecular dynamics (RPMD), and centroid molecular dynamics (CMD) methods are applied to the simulation of normal liquid helium. Comparisons of the simulation results at the T = 4 K and rho = 0.01873 A-3 state point are presented. The calculated quantum correlation functions for the three methods show significant differences, both in the short time and in the intermediate regions of the spectrum. Our simulation results are also compared to the recent results of other approximate quantum simulation methods. We find that FK-LPI qualitatively agrees with other approximate quantum simulation results while CMD and RPMD predict a qualitatively different impulsive rebound in the velocity autocorrelation function. Frequency space analysis reveals that RPMD exhibits a broad high-frequency tail similar to that from quantum mode coupling theory and numerical analytic continuation approaches, while FK-LPI provides a somewhat more rapid decay at high frequency than any of these three methods. CMD manifests a high-frequency component that is greatly reduced compared with the other methods.
spellingShingle Hone, T
Poulsen, J
Rossky, P
Manolopoulos, D
Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title_full Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title_fullStr Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title_full_unstemmed Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title_short Comparison of approximate quantum simulation methods applied to normal liquid helium at 4 K.
title_sort comparison of approximate quantum simulation methods applied to normal liquid helium at 4 k
work_keys_str_mv AT honet comparisonofapproximatequantumsimulationmethodsappliedtonormalliquidheliumat4k
AT poulsenj comparisonofapproximatequantumsimulationmethodsappliedtonormalliquidheliumat4k
AT rosskyp comparisonofapproximatequantumsimulationmethodsappliedtonormalliquidheliumat4k
AT manolopoulosd comparisonofapproximatequantumsimulationmethodsappliedtonormalliquidheliumat4k