Quantum Turbulence and Planckian Dissipation

被引:3
|
作者
Volovik, G. E. [1 ]
机构
[1] Aalto Univ, Low Temp Lab, POB 15100, FI-00076 Aalto, Finland
基金
欧洲研究理事会;
关键词
MUTUAL FRICTION; SUPERFLUID HE-3; VORTEX DYNAMICS; POLAR PHASE; VORTICES; LIQUID-HE-3; STATES; FLOW;
D O I
10.1134/S0021364022100344
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The notion of the Planckian dissipation is extended to the system of the Caroli-de Gennes-Matricon discrete energy levels in the vortex core of superconductors and fermionic superfluids. In this extension, the Planck dissipation takes place when the relaxation time tau is comparable with the quantum Heisenberg time t(H) = (h) over bar/Delta E, where Delta E is the interlevel distance in the vortex core (the minigap). This type of Planck dissipation has two important physical consequences. First, it determines the regime, when the effect of the axial anomaly becomes important. The anomalous spectral flow of the energy levels along the chiral branch of the Caroli-de Gennes-Matricon states becomes important in the super-Planckian region, i.e. when tau < <(h)over bar>/Delta E. Second, the Planck dissipation separates the laminar flow of the superfluid liquid at tau < <(h)over bar>/Delta E and the vortex turbulence regime at tau > (h) over bar/Delta E.
引用
收藏
页码:461 / 465
页数:5
相关论文
共 50 条
  • [21] Strange Metal in Magic-Angle Graphene with near Planckian Dissipation
    Cao, Yuan
    Chowdhury, Debanjan
    Rodan-Legrain, Daniel
    Rubies-Bigorda, Oriol
    Watanabe, Kenji
    Taniguchi, Takashi
    Senthil, T.
    Jarillo-Herrero, Pablo
    PHYSICAL REVIEW LETTERS, 2020, 124 (07)
  • [22] Universal T-linear resistivity and Planckian dissipation in overdoped cuprates
    Legros, A.
    Benhabib, S.
    Tabis, W.
    Laliberte, F.
    Dion, M.
    Lizaire, M.
    Vignolle, B.
    Vignolles, D.
    Raffy, H.
    Li, Z. Z.
    Auban-Senzier, P.
    Doiron-Leyraud, N.
    Fournier, P.
    Colson, D.
    Taillefer, L.
    Proust, C.
    NATURE PHYSICS, 2019, 15 (02) : 142 - +
  • [23] Planckian birth of a quantum de Sitter universe
    Ambjorn, J.
    Goerlich, A.
    Jurkiewicz, J.
    Loll, R.
    PHYSICAL REVIEW LETTERS, 2008, 100 (09)
  • [24] Interferometric tests of Planckian quantum geometry models
    Kwon, Ohkyung
    Hogan, Craig J.
    CLASSICAL AND QUANTUM GRAVITY, 2016, 33 (10)
  • [25] ON THE PROPAGATION OF QUANTUM-FIELDS AT PLANCKIAN ENERGIES
    PERCACCI, R
    RUSSO, J
    MODERN PHYSICS LETTERS A, 1992, 7 (10) : 865 - 869
  • [26] Local dissipation scales in turbulence
    Schumacher, Joerg
    Sreenivasan, Katepalli R.
    Yakhot, Victor
    ADVANCES IN TURBULENCE XI, 2007, 117 : 200 - +
  • [27] Dissipation in compressible magnetohydrodynamic turbulence
    Stone, JM
    Ostriker, EC
    Gammie, CF
    ASTROPHYSICAL JOURNAL, 1998, 508 (01): : L99 - L102
  • [28] ASYMPTOTIC DISSIPATION RATE IN TURBULENCE
    GROSSMANN, S
    PHYSICAL REVIEW E, 1995, 51 (06): : 6275 - 6277
  • [29] Decaying Turbulence and Anomalous Dissipation
    Salewski, M.
    McComb, W. D.
    Berera, A.
    Yoffe, S.
    PROGRESS IN TURBULENCE AND WIND ENERGY IV, 2012, 141 : 31 - 34
  • [30] New features in turbulence dissipation
    Chen, Chang Hsin
    PHYSICS OF FLUIDS, 2023, 35 (04)