Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties

We extract electron transport properties from atomistic simulations of a two-component plasma by mapping the long-wavelength behaviour to a two-fluid model. The mapping procedure is performed via Markov Chain Monte Carlo sampling over multiple spectra simultaneously. The free-electron dynamic struct...

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Hoofdauteurs: Svensson, P, Hollebon, P, Plummer, D, Vinko, SAM, Gregori, G
Formaat: Journal article
Taal:English
Gepubliceerd in: American Physical Society 2025
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author Svensson, P
Hollebon, P
Plummer, D
Vinko, SAM
Gregori, G
author_facet Svensson, P
Hollebon, P
Plummer, D
Vinko, SAM
Gregori, G
author_sort Svensson, P
collection OXFORD
description We extract electron transport properties from atomistic simulations of a two-component plasma by mapping the long-wavelength behaviour to a two-fluid model. The mapping procedure is performed via Markov Chain Monte Carlo sampling over multiple spectra simultaneously. The free-electron dynamic structure factor and its properties have been investigated in the hydrodynamic formulation to justify its application to the long-wavelength behaviour of warm dense matter. We have applied this method to warm dense hydrogen modelled with wave packet molecular dynamics and showed that the inferred electron transport properties are in agreement with a variety of reference calculations, except for the electron viscosity, where a substantive decrease is observed when compared to classical models.
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spelling oxford-uuid:dd0cc2bc-aba5-478e-b419-1a9fbd577cee2025-03-05T14:37:36ZModelling of warm dense hydrogen via explicit real time electron dynamics: electron transport propertiesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dd0cc2bc-aba5-478e-b419-1a9fbd577ceeEnglishSymplectic ElementsAmerican Physical Society2025Svensson, PHollebon, PPlummer, DVinko, SAMGregori, GWe extract electron transport properties from atomistic simulations of a two-component plasma by mapping the long-wavelength behaviour to a two-fluid model. The mapping procedure is performed via Markov Chain Monte Carlo sampling over multiple spectra simultaneously. The free-electron dynamic structure factor and its properties have been investigated in the hydrodynamic formulation to justify its application to the long-wavelength behaviour of warm dense matter. We have applied this method to warm dense hydrogen modelled with wave packet molecular dynamics and showed that the inferred electron transport properties are in agreement with a variety of reference calculations, except for the electron viscosity, where a substantive decrease is observed when compared to classical models.
spellingShingle Svensson, P
Hollebon, P
Plummer, D
Vinko, SAM
Gregori, G
Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title_full Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title_fullStr Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title_full_unstemmed Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title_short Modelling of warm dense hydrogen via explicit real time electron dynamics: electron transport properties
title_sort modelling of warm dense hydrogen via explicit real time electron dynamics electron transport properties
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AT hollebonp modellingofwarmdensehydrogenviaexplicitrealtimeelectrondynamicselectrontransportproperties
AT plummerd modellingofwarmdensehydrogenviaexplicitrealtimeelectrondynamicselectrontransportproperties
AT vinkosam modellingofwarmdensehydrogenviaexplicitrealtimeelectrondynamicselectrontransportproperties
AT gregorig modellingofwarmdensehydrogenviaexplicitrealtimeelectrondynamicselectrontransportproperties