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Transition to ballistic regime for heat transport in helium II
Authors:Michele Sciacca  Antonio Sellitto  David Jou
Affiliation:1. Dipartimento Scienze Agrarie e Forestali, Università degli studi di Palermo, Viale delle Scienze, 90128 Palermo, Italy;2. Departament de Física, Universitat Autònoma de Barcelona, 08193 Bellaterra, Catalonia, Spain;3. Dipartimento di Matematica, Informatica ed Economia, Università della Basilicata, Campus Macchia Romana, 85100 Potenza, Italy;4. Institut d''Estudis Catalans, Carme 47, 08001 Barcelona, Catalonia, Spain
Abstract:The size-dependent and flux-dependent effective thermal conductivity of narrow capillaries filled with superfluid helium is analyzed from a thermodynamic continuum perspective. The classical Landau evaluation of the effective thermal conductivity of quiescent superfluid, or the Gorter–Mellinck regime of turbulent superfluids, is extended to describe the transition to ballistic regime in narrow channels wherein the radius R is comparable to (or smaller than) the phonon mean-free path ?   in superfluid helium. To do so, we start from an extended equation for the heat flux incorporating non-local terms, and take into consideration a heat slip flow along the walls of the tube. This leads from an effective thermal conductivity proportional to R2R2 (Landau regime) to another one proportional to R? (ballistic regime). We consider two kinds of flows: along cylindrical pipes and along two infinite parallel plates.
Keywords:Thermal conductivity   Liquid helium   Quantum turbulence   Micropores   Quantized vortices   Ballistic phonons
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