G. Aarts et J. Berges, Nonequilibrium time evolution of the spectral function in quantum field theory - art. no. 105010, PHYS REV D, 6410(10), 2001, pp. 5010
Transport or kinetic equations are often derived assuming a quasiparticle (
on-shell) representation of the spectral function. We investigate this assu
mption using a three-loop approximation of the 2PI effective action in real
time, without a gradient expansion or on-shell approximation. For a scalar
field in 1 + 1 dimensions the nonlinear evolution, including the integrati
on over memory kernels, can be solved numerically. We find that a spectral
function approximately described by a nonzero width emerges dynamically. Du
ring the nonequilibrium time evolution the Wigner transformed spectral func
tion is slowly varying, even in the presence of strong qualitative changes
in the effective particle distribution. These results may be used to make f
urther analytical progress toward a quantum Boltzmann equation including of
f-shell effects and a nonzero width.