Title of article
Finite width in out-of-equilibrium propagators and kinetic theory Original Research Article
Author/Authors
Bj?rn Garbrecht، نويسنده , , Mathias Garny، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
21
From page
914
To page
934
Abstract
We derive solutions to the Schwinger–Dyson equations on the Closed-Time-Path for a scalar field in the limit where backreaction is neglected. In Wigner space, the two-point Wightman functions have the curious property that the equilibrium component has a finite width, while the out-of equilibrium component has zero width. This feature is confirmed in a numerical simulation for scalar field theory with quartic interactions. When substituting these solutions into the collision term, we observe that an expansion including terms of all orders in gradients leads to an effective finite-width. Besides, we observe no breakdown of perturbation theory, that is sometimes associated with pinch singularities. The effective width is identical with the width of the equilibrium component. Therefore, reconciliation between the zero-width behaviour and the usual notion in kinetic theory, that the out-of-equilibrium contributions have a finite width as well, is achieved. This result may also be viewed as a generalisation of the fluctuation–dissipation relation to out-of-equilibrium systems with negligible backreaction.
Keywords
Out-of-equilibrium field theory , Kadanoff–Baym equation , Leptogenesis , Cosmology
Journal title
Annals of Physics
Serial Year
2012
Journal title
Annals of Physics
Record number
1206577
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