Published January 1987 | Version v1
Journal article

Time-local view of nonequilibrium statistical mechanics. I. Linear theory of transport and relaxation

Creators

  • 1. Zentralinstitut fuer Isotopen- und Strahlenforschung, Leipzig, East Germany

Description

The aim of this paper is to develop the time-local picture (TLP) of nonequilibrium statistical mechanics on a new footing and to consider its physical implications for topics such as the formulation of irreversible thermodynamics. The most natural approach to TLP is seen to derive from the Fourier-Laplace transform anti C(z) of pertinent time correlation functions, which on the physical sheet typically displays an essential singularity at z = ∞ and a number of macroscopic and microscopic poles in the lower half-plane corresponding to long- and short-lived modes, respectively, the former giving rise to the autonomous macrodynamics, whereas the latter are interpreted as doorway modes mediating the transfer of information from relevant to irrelevant channels. Possible implications of this doorway mode concept for so-called extended irreversible thermodynamics are briefly discussed. The pole structure is used for deriving new kinds of generalized Green-Kubo relations expressing macroscopic quantities, transport coefficients, e.g., by contour integrals over current-current correlation functions obeying Hamiltonian dynamics, the contour integration replacing projection

Additional details

Publishing Information

Journal Title
J. Stat. Phys.
Journal Volume
46
Journal Issue
1-2
Series
J. Stat. Phys.
Journal Page Range
349-389
ISSN
0022-4715
CODEN
JSTPB