Non-perturbative rheological behavior of a far-from-equilibrium expanding plasma

被引:38
|
作者
Behtash, Alireza [1 ]
Cruz-Camacho, C. N. [2 ]
Kamata, Syo [1 ]
Martinez, M. [1 ]
机构
[1] North Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA
[2] Univ Nacl Colombia, Sede Bogota, Fac Ciencias, Dept Fis,Grp Fis Nucl, Carrera 45 26-85,Edificio Uriel Gutierrez, Bogota 111321, Colombia
关键词
Boltzmann equation; Thermalization; Kinetic theory; Hydrodynamization; Rheology; Non-newtonian fluids; DYNAMICS; SYSTEMS;
D O I
10.1016/j.physletb.2019.134914
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
For the Bjorken flow we investigate the hydrodynamization of different modes of the one-particle distribution function by analyzing its relativistic kinetic equations. We calculate the constitutive relations of each mode written as a multi-parameter trans-series encoding the non-perturbative dissipative contributions quantified by the Knudsen Kn and inverse Reynolds Re-1 numbers. At any given order in the asymptotic expansion of each mode, the transport coefficients get effectively renormalized by summing over all non-perturbative sectors appearing in the trans-series. This gives an effective description of the transport coefficients that provides a new renormalization scheme with an associated renormalization group equation, going beyond the realms of linear response theory. As a result, the renormalized transport coefficients feature a transition to their equilibrium fixed point, which is a neat diagnostics of transient non-Newtonian behavior. As a proof of principle, we verify the predictions of the effective theory with the numerical solutions of their corresponding evolution equations. Our studies strongly suggest that the phenomenological success of fluid dynamics far from local thermal equilibrium is due to the transient rheological behavior of the fluid. (C) 2019 The Authors. Published by Elsevier B.V.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Fluid dynamics far-from-equilibrium: a concrete example
    Denicol, Gabriel S.
    Noronha, Jorge
    NUCLEAR PHYSICS A, 2021, 1005
  • [42] DYNAMICS OF PARTICLE DEPOSITION ON A DISORDERED SUBSTRATE .2. FAR-FROM-EQUILIBRIUM BEHAVIOR
    TSAI, YC
    SHAPIR, Y
    PHYSICAL REVIEW E, 1994, 50 (06) : 4445 - 4469
  • [43] Far-from-equilibrium energy flow and entanglement entropy
    Megias, Eugenio
    5TH INTERNATIONAL CONFERENCE ON NEW FRONTIERS IN PHYSICS, 2017, 164
  • [44] Universal far-from-equilibrium dynamics of a holographic superconductor
    Julian Sonner
    Adolfo del Campo
    Wojciech H. Zurek
    Nature Communications, 6
  • [45] Far-from-equilibrium dynamics of an ultracold Fermi gas
    M. Kronenwett
    T. Gasenzer
    Applied Physics B, 2011, 102 : 469 - 488
  • [46] Rate Constant in Far-from-Equilibrium Open Systems
    Kamimura, A.
    Yukawa, S.
    Ito, N.
    COMPUTER SIMULATION STUDIES IN CONDENSED-MATTER PHYSICS XIX, 2009, 123 : 84 - 88
  • [47] Far-from-equilibrium processing of multiphase ceramic nanocomposites
    Sadangi, R. K.
    Shukla, V.
    Kear, B. H.
    MATERIALS AND MANUFACTURING PROCESSES, 2007, 22 (04) : 507 - 510
  • [48] Quarkonium dissociation in a far-from-equilibrium holographic setup
    Bellantuono, L.
    Colangelo, P.
    De Fazio, F.
    Giannuzzi, F.
    Nicotri, S.
    PHYSICAL REVIEW D, 2017, 96 (03)
  • [49] Stable non-racemic states in far-from-equilibrium systems as origin of homochirality
    Plasson, Raphael
    Asakura, Kouichi
    Kondepudi, Dilip K.
    ORIGINS OF LIFE AND EVOLUTION OF THE BIOSPHERE, 2006, 36 (03): : 282 - 283
  • [50] Non-perturbative effective interactions from fluxes
    Billo, Marco
    Ferro, Livia
    Frau, Marialuisa
    Fucito, Francesco
    Lerda, Alberto
    Morales, Jose F.
    JOURNAL OF HIGH ENERGY PHYSICS, 2008, (12):