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Spatially inhomogeneous thermo field dynamics

โœ Scribed by K. Nakamura; H. Umezawa; Y. Yamanaka


Publisher
Elsevier Science
Year
1988
Tongue
English
Weight
965 KB
Volume
150
Category
Article
ISSN
0378-4371

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โœฆ Synopsis


Non-equilibrium therm0 field dynamics is extended to treat spatially inhomogeneous systems. A canonical formalism of thermally dissipative semi-free fields describing spatially inhomogeneous situations is presented. With this formalism, a scheme of perturbative calculations is developed and the "on-shell" renormalization condition is discussed. We illustrate this scheme using a model of particles interacting with impurities and find that the self-consistent renormalization condition gives the kinetic equation for the averaged particle number density as well as the renormalized energy and the dissipative coefficient. It is also shown that this kinetic equation can be reduced to the Boltzmann equation in the gradient expansion approximation.


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Spin relaxation in terms of thermo field
โœ T. Tominaga; M. Ban; T. Arimitsu; J. Pradko; H. Umezawa ๐Ÿ“‚ Article ๐Ÿ“… 1988 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 899 KB

An axiomatic formulation of the therm0 field dynamics (TFD) for spin systems is performed. and is applied to the relaxation process of single spin-1. The spin relaxation accompanied with a change of symmetry of the system is also investigated. The time evolution of an order parameter is obtained wi