Dissipation and phase slip in confined superfluid 4He

被引:2
|
作者
Ferrell, RA [1 ]
Mukhin, SI
机构
[1] Univ Maryland, Ctr Superconduct Res, College Pk, MD 20742 USA
[2] Moscow Steel & Alloys Inst, Dept Theoret Phys, Moscow 117936, Russia
关键词
Vortex; Steady State; Magnetic Material; Thermal Resistance; Physical Mechanism;
D O I
10.1023/A:1004697215090
中图分类号
O59 [应用物理学];
学科分类号
摘要
We give a brief summary of some results that are to appear elsewhere. We have studied a vortex-related mechanism for the non-vanishing thermal resistance well below the bulk: lambda point of liquid He-4 confined in a long cylinder. Here we outline the main concept of the proposed physical mechanism. It involves the non-equilibrium distribution of vortices in the steady state when a small heat current flows along the cylinder axis. We have found that the probability of the saddle-point vortex: configuration, which depends exponentially on the length of the vortex, scaled in units of the superfluid correlation length, is the dominant factor in the thermal resistance.
引用
收藏
页码:277 / 281
页数:5
相关论文
共 50 条
  • [1] Dissipation and Phase Slip in Confined Superfluid 4He
    R. A. Ferrell
    S. I. Mukhin
    Journal of Low Temperature Physics, 2000, 119 : 277 - 281
  • [2] Dissipation and Phase Slip in Confined Superfluid Helium: Evidence for an Equilibrium Distribution of Vortices
    R. A. Ferrell
    S. I. Mukhin
    International Journal of Thermophysics, 2001, 22 : 1411 - 1420
  • [3] Dissipation and phase slip in confined superfluid helium: Evidence for an equilibrium distribution of vortices
    Ferrell, RA
    Mukhin, SI
    INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2001, 22 (05) : 1411 - 1420
  • [4] Surface Effects of 4He Coating on the Viscosity and the Slip Length of Normal and Superfluid 3He
    A. Matsubara
    K. Kawasaki
    H. Inaba
    S. Miyawaki
    O. Ishikawa
    T. Hata
    T. Kodama
    Journal of Low Temperature Physics, 1999, 114 : 349 - 370
  • [5] Vortex-Loops and Phase Nucleation in Superfluid 4He and 3He
    Nir Gov
    Journal of Low Temperature Physics, 2002, 126 : 621 - 625
  • [6] Quantum Evaporation from Superfluid 4He
    C.D.H. Williams
    Journal of Low Temperature Physics, 1998, 113 : 11 - 18
  • [7] The Superfluid 4He Analog of the RF SQUID
    K. Schwab
    N. Bruckner
    Richard Packard
    Journal of Low Temperature Physics, 1998, 110 : 1043 - 1104
  • [8] The Interpretation of Phase-Slip and Critical-Velocity Data from the Flow of Superfluid 4He through a 2 μm by 2 μm Aperture
    W. Zimmermann
    C. A. Lindensmith
    J. A. Flaten
    Journal of Low Temperature Physics, 1998, 110 : 497 - 502
  • [9] Tortuosity and dissipation of liquid 4He in aerogel
    Ashton, C
    Babuin, S
    Golov, AI
    JOURNAL OF LOW TEMPERATURE PHYSICS, 2005, 138 (1-2) : 183 - 188
  • [10] Tortuosity and Dissipation of Liquid 4He in Aerogel
    C. Ashton
    S. Babuin
    A. I. Golov
    Journal of Low Temperature Physics, 2005, 138 : 183 - 188