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Plasmon mass scale and quantum fluctuations of classical fields on a real time lattice

  • Aleksi Kurkela
  • , Tuomas Lappi
  • , Jarkko Peuron

Forskningsoutput: TidskriftsbidragKonferensartikelVetenskapligPeer review

Sammanfattning

Classical real-time lattice simulations play an important role in understanding non-equilibrium phenomena in gauge theories and are used in particular to model the prethermal evolution of heavy-ion collisions. Above the Debye scale the classical Yang-Mills (CYM) theory can be matched smoothly to kinetic theory. First we study the limits of the quasiparticle picture of the CYM fields by determining the plasmon mass of the system using 3 different methods. Then we argue that one needs a numerical calculation of a system of classical gauge fields and small linearized fluctuations, which correspond to quantum fluctuations, in a way that keeps the separation between the two manifest. We demonstrate and test an implementation of an algorithm with the linearized fluctuation showing that the linearization indeed works and that the Gauss’s law is conserved.
Originalspråkengelska
Artikelnummer11001
TidskriftEPJ Web of Conferences
Volym175
Antal sidor8
ISSN2100-014X
DOI
StatusPublicerad - mars 2018
MoE-publikationstypA4 Artikel i en konferenspublikation
EvenemangInternational Symposium on Lattice Field Theory - Granada, Spanien
Varaktighet: 18 juni 201724 juni 2017
Konferensnummer: 35th

Vetenskapsgrenar

  • 114 Fysik

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