Friction force on a vortex due to the scattering of superfluid excitations in helium II

The longitudinal friction acting on a vortex line in superfluid (formula presented) is investigated within a simple model based on the analogy between such vortex dynamics and that of the quantal Brownian motion of a charged point particle in a uniform magnetic field. The scattering of superfluid qu...

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Autores principales: Cataldo, H.M., Jezek, D.M.
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Acceso en línea:http://hdl.handle.net/20.500.12110/paper_10980121_v65_n18_p1_Cataldo
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spelling todo:paper_10980121_v65_n18_p1_Cataldo2023-10-03T16:05:44Z Friction force on a vortex due to the scattering of superfluid excitations in helium II Cataldo, H.M. Jezek, D.M. The longitudinal friction acting on a vortex line in superfluid (formula presented) is investigated within a simple model based on the analogy between such vortex dynamics and that of the quantal Brownian motion of a charged point particle in a uniform magnetic field. The scattering of superfluid quasiparticle excitations by the vortex stems from a translationally invariant interaction potential which, expanded to first order in the vortex velocity operator, gives rise to vortex transitions between nearest Landau levels. The corresponding friction coefficient is shown to be, in the limit of elastic scattering (vanishing cyclotron frequency), equivalent to that arising from the Iordanskii formula. Proposing a simple functional form for the scattering amplitude, with only one adjustable parameter whose value is set in order to get agreement to the Iordanskii result for phonons, an excellent agreement is also found with the values derived from experimental data up to temperatures about 1.5 K. Finite values of the cyclotron frequency arising from recent theories are shown to yield similar results. The incidence of vortex-induced quasiparticle transitions on the friction process is estimated to be, in the roton dominated regime, about 50% of the value of the friction coefficient, (formula presented) of which corresponds to roton-phonon transitions and (formula presented) to roton (formula presented) ones. © 2002 The American Physical Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_10980121_v65_n18_p1_Cataldo
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
description The longitudinal friction acting on a vortex line in superfluid (formula presented) is investigated within a simple model based on the analogy between such vortex dynamics and that of the quantal Brownian motion of a charged point particle in a uniform magnetic field. The scattering of superfluid quasiparticle excitations by the vortex stems from a translationally invariant interaction potential which, expanded to first order in the vortex velocity operator, gives rise to vortex transitions between nearest Landau levels. The corresponding friction coefficient is shown to be, in the limit of elastic scattering (vanishing cyclotron frequency), equivalent to that arising from the Iordanskii formula. Proposing a simple functional form for the scattering amplitude, with only one adjustable parameter whose value is set in order to get agreement to the Iordanskii result for phonons, an excellent agreement is also found with the values derived from experimental data up to temperatures about 1.5 K. Finite values of the cyclotron frequency arising from recent theories are shown to yield similar results. The incidence of vortex-induced quasiparticle transitions on the friction process is estimated to be, in the roton dominated regime, about 50% of the value of the friction coefficient, (formula presented) of which corresponds to roton-phonon transitions and (formula presented) to roton (formula presented) ones. © 2002 The American Physical Society.
format JOUR
author Cataldo, H.M.
Jezek, D.M.
spellingShingle Cataldo, H.M.
Jezek, D.M.
Friction force on a vortex due to the scattering of superfluid excitations in helium II
author_facet Cataldo, H.M.
Jezek, D.M.
author_sort Cataldo, H.M.
title Friction force on a vortex due to the scattering of superfluid excitations in helium II
title_short Friction force on a vortex due to the scattering of superfluid excitations in helium II
title_full Friction force on a vortex due to the scattering of superfluid excitations in helium II
title_fullStr Friction force on a vortex due to the scattering of superfluid excitations in helium II
title_full_unstemmed Friction force on a vortex due to the scattering of superfluid excitations in helium II
title_sort friction force on a vortex due to the scattering of superfluid excitations in helium ii
url http://hdl.handle.net/20.500.12110/paper_10980121_v65_n18_p1_Cataldo
work_keys_str_mv AT cataldohm frictionforceonavortexduetothescatteringofsuperfluidexcitationsinheliumii
AT jezekdm frictionforceonavortexduetothescatteringofsuperfluidexcitationsinheliumii
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