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Gravitational Phase Transition of Fermionic Matter in a General Relativistic Framework (CROSBI ID 81649)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Bilić, Neven ; Viollier, Raoul D. Gravitational Phase Transition of Fermionic Matter in a General Relativistic Framework // European physical journal C : particles and fields, 11 (1999), 1; 173-180-x

Podaci o odgovornosti

Bilić, Neven ; Viollier, Raoul D.

engleski

Gravitational Phase Transition of Fermionic Matter in a General Relativistic Framework

The Thomas-Fermi model at finite temperature is extended to describe a system of self-gravitating weakly interacting massive fermions in a general-relativistic framework. The existence and properties of the gravitational phase transition in this model are investigated numerically. It is shown that, by cooling a nondegenerate gas of weakly interacting massive fermions below some critical temperature, a condensed phase emerges, consisting of quasidegenerate fermion stars. For fermion masses of 10 to 25 keV, these fermion stars may very well provide an alternative explanation for the supermassive compact dark objects that are observed at galactic centers.

Thomas-Fermi model; Einstein's field equations; phase transition; gravitational collapse; fermion star; dark matter; galactic center

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Podaci o izdanju

11 (1)

1999.

173-180-x

objavljeno

1434-6044

Povezanost rada

Fizika

Indeksiranost