Fluctuation instability of the Dirac Sea in quark models of strong interactions


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Abstract

A number of exactly integrable (quark) models of quantum field theory that feature an infinite correlation length are considered. An instability of the standard vacuum quark ensemble, a Dirac sea (in spacetimes of dimension higher than three), is highlighted. It is due to a strong ground-state degeneracy, which, in turn, stems from a special character of the energy distribution. In the case where the momentumcutoff parameter tends to infinity, this distribution becomes infinitely narrow and leads to large (unlimited) fluctuations. A comparison of the results for various vacuum ensembles, including a Dirac sea, a neutral ensemble, a color superconductor, and a Bardeen–Cooper–Schrieffer (BCS) state, was performed. In the presence of color quark interaction, a BCS state is unambiguously chosen as the ground state of the quark ensemble.

About the authors

G. M. Zinovjev

Bogolyubov Institute for Theoretical Physics

Author for correspondence.
Email: Gennady.Zinovjev@cern.ch
Ukraine, ul. Metrologicheskaya 14b, Kyiv, 03680

S. V. Molodtsov

Joint Institute for Nuclear Research; Institute for Theoretical and Experimental Physics

Email: Gennady.Zinovjev@cern.ch
Russian Federation, ul. Joliot-Curie 6, Dubna, Moscow oblast, 141980; Bol’shaya Cheremuskinskaya ul. 25, Moscow, 117218

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