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TMF, 1986 Volume 69, Number 1, Pages 3–24 (Mi tmf5200)

This article is cited in 7 papers

Nonconservation of the fermion number in a cold dense fermion medium in $V-A$ gauge theories

V. A. Matveev, V. A. Rubakov, A. N. Tavkhelidze, V. F. Tokarev


Abstract: It is shown that in four-dimensional Abelian $V-A$ theories the ground state of cold neutral fermionic matter at sufficiently high densities is an essentially inhomogeneous state in which there is a domain of anomalous matter surrounded by normal vacuum. Within the domain, the condensate of the gauge field is nonzero; its appearance reduces effectively to zero the number of real fermions both within and without the domain. In four-dimensional non-Abelian $V-A$ theories the anomalous state of cold neutral fermionic matter is, in its turn, absolutely unstable, and the system goes over to the normal state with a small number of fermions above a topologically nontrivial vacuum. Thus, in a number of non-Abelian models the fermion density cannot exceed a certain critical value.

Received: 30.06.1986


 English version:
Theoretical and Mathematical Physics, 1986, 69:1, 3–24


© Steklov Math. Inst. of RAS, 2024