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The Gaussian entropy of fermionic systems

Authors :
Prokopec, T.
Schmidt, M.G.
Weenink, J.G.
Theoretical Physics
Sub String Theory Cosmology and ElemPart
Source :
Annals of Physics, 327(12), 3138. Academic Press Inc.
Publication Year :
2012

Abstract

We consider the entropy and decoherence in fermionic quantum systems. By making a Gaussian Ansatz for the density operator of a collection of fermions we study statistical 2-point correlators and express the entropy of a system fermion in terms of these correlators. In a simple case when a set of N thermalised environmental fermionic oscillators interacts bi-linearly with the system fermion we can study its time dependent entropy, which also represents a quantitative measure for decoherence. We then consider a relativistic fermionic quantum field theory and take a mass mixing term as a simple model for the Yukawa interaction. It turns out that even in this Gaussian approximation, the fermionic system decoheres quite effectively, such that in a large coupling and high temperature regime the system field approaches the temperature of the environmental fields.<br />28 pages, 13 figures, updated to match published version

Details

Language :
English
ISSN :
00034916
Volume :
327
Issue :
12
Database :
OpenAIRE
Journal :
Annals of Physics
Accession number :
edsair.doi.dedup.....1f7e6d4cd28df307ccb33e2d6c5941a3