Persistent Precessing Texture-Trapped Domains in Low Temperature Superfluid 3He

被引:0
作者
N. S. Shaw
D. J. Cousins
S. N. Fisher
A. I. Gregory
G. R. Pickett
Yu. M. Bunkov
机构
[1] Lancaster University,School of Physics and Chemistry
[2] Centre National de la,Centre de Recherches sur les Très Basses Températures
[3] Recherche Scientifique,undefined
来源
Journal of Low Temperature Physics | 1998年 / 110卷
关键词
Radiation; Time Evolution; Magnetic Material; Systematic Study; Spin State;
D O I
暂无
中图分类号
学科分类号
摘要
It has recently been discovered that at temperatures below about 0.2TCin superfluid3He-B, pulsed NMR excitation can generate a new coherently precessing spin state which can have a lifetime of tens of seconds. The free induction decay signal from this state has been called the persistent induction signal (PIS). The earlier observations of the PIS have found it to be highly irreproducible indicating a strong connection with the magnetic texture. Here we describe measurements of the PIS within an experimental cell which was designed to fix the textural configuration of the superfluid. The resulting PIS signals are now far more reproducible allowing a more systematic study of the behaviour which we present here. Furthermore in the latest cell the decay of this signal has been observed to last for up to 4 minutes at the lowest temperatures. While the precessing state is readily accessible to observation, at these temperatures it is a very delicate object and we can immediately see the influence of background radiation on the time evolution of the decay.
引用
收藏
页码:57 / 62
页数:5
相关论文
共 50 条
  • [31] High-Energy Low-Temperature Physics: Production of Phase Transitions and Topological Defects by Energetic Particles in Superfluid 3He
    A. J. Leggett
    Journal of Low Temperature Physics, 2002, 126 : 775 - 804
  • [32] Preliminary Measurements of Andreev Reflection of Quasiparticles by Turbulence in Superfluid 3He
    D. I. Bradley
    S. N. Fisher
    A. M. Guénault
    M. Lowe
    G. R. Pickett
    A. Rahm
    Journal of Low Temperature Physics, 2001, 124 : 113 - 122
  • [33] The Thermal Conductivity of Superfluid 3He in Aerogel: A Measurement of the Energy Gap
    S. N. Fisher
    A. M. Guénault
    A. J. Hale
    G. R. Pickett
    Journal of Low Temperature Physics, 2002, 126 : 673 - 678
  • [34] 3He in 99.5% porous aerogel at the normal-superfluid transition
    Kingsley, SCJ
    Lawes, G
    Golov, A
    Matsumoto, K
    Porto, JV
    Smith, EN
    Mulders, N
    Chan, MHW
    Parpia, JM
    JOURNAL OF LOW TEMPERATURE PHYSICS, 1998, 113 (3-4) : 357 - 361
  • [35] Superfluid 3He in Presence of Spin-Polarized Scattering Centers
    G. A. Baramidze
    G. A. Kharadze
    Journal of Low Temperature Physics, 2004, 135 : 399 - 409
  • [36] Thermal phenomena in the flow of superfluid 3He through a weak link
    S.V. Pereverzev
    G. Eska
    Journal of Low Temperature Physics, 2005, 138 : 135 - 140
  • [37] 3He in 99.5% Porous Aerogel at the Normal-Superfluid Transition
    S.C.J. Kingsley
    G. Lawes
    A. Golov
    K. Matsumoto
    J.V. Porto
    E.N. Smith
    N. Mulders
    M.H.W. Chan
    J.M. Parpia
    Journal of Low Temperature Physics, 1998, 113 : 357 - 361
  • [38] Ultra-Low Temperature Magnetic Properties of Liquid 3He Films
    C. Bäuerle
    Yu. M. Bunkov
    A.S. Chen
    S. N. Fisher
    H. Godfrin
    Journal of Low Temperature Physics, 1998, 110 : 333 - 338
  • [39] Low Temperature Heat-Capacities of Liquid 3He Thin Films
    M. Morishita
    K. Ishida
    K. Yawata
    H. Nagatani
    Hiroshi Fukuyama
    Journal of Low Temperature Physics, 1998, 110 : 351 - 356
  • [40] 3He Correlation Energy in the Random Phase Approximation: the One-Ripplon-Exchange Potential in Thin 3He–4He Superfluid Films
    R. H. Anderson
    M. D. Miller
    Journal of Low Temperature Physics, 2000, 121 : 513 - 518