Title of article
Thermalization of fermionic quantum fields Original Research Article
Author/Authors
Jürgen Berges، نويسنده , , Szabolcs Bors?nyi، نويسنده , , Julien Serreau، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
30
From page
51
To page
80
Abstract
We solve the nonequilibrium dynamics of a (3+1)-dimensional theory with Dirac fermions coupled to scalars via a chirally invariant Yukawa interaction. The results are obtained from a systematic coupling expansion of the 2PI effective action to lowest nontrivial order, which includes scattering as well as memory and off-shell effects. The dynamics is solved numerically without further approximation, for different far-from-equilibrium initial conditions. The late-time behavior is demonstrated to be insensitive to the details of the initial conditions and to be uniquely determined by the initial energy density. Moreover, we show that at late time the system is very well characterized by a thermal ensemble. In particular, we are able to observe the emergence of Fermi–Dirac and Bose–Einstein distributions from the nonequilibrium dynamics.
Journal title
Nuclear Physics B
Serial Year
2003
Journal title
Nuclear Physics B
Record number
879455
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