Please use this identifier to cite or link to this item: https://hdl.handle.net/10321/5841
Title: Superfluid stars and Q-balls in curved spacetime
Authors: Zloshchastiev, Konstantin G. 
Keywords: Quantum Bose liquid;Superfluidity in cold stars;Q-ball;Logarithmic scalar gravity;Astro-ph.HE;0105 Mathematical Physics;0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics;0204 Condensed Matter Physics;General Physics;5102 Atomic, molecular and optical physics;5104 Condensed matter physics
Issue Date: Feb-2021
Publisher: AIP Publishing
Source: Zloshchastiev, K.G. 2021. Superfluid stars and Q-balls in curved spacetime. Low Temperature Physics. 47(2): 89-95. doi:10.1063/10.0003166
Journal: Low Temperature Physics; Vol. 47, Issue 2 
Abstract: 
Within the framework of the theory of strongly-interacting quantum Bose liquids, we consider a general relativistic model of self-interacting complex scalar fields with logarithmic nonlinearity taken from dense superfluid models. We demonstrate the existence of gravitational equilibria in this model, described by spherically symmeric nonsingular finite-mass asymptotically-flat solutions. These equilibrium configurations can describe both massive astronomical objects, such as bosonized superfluid stars or cores of neutron stars, and finite-size particles and non-topological solitons, such as Q-balls. We give an estimate for masses and sizes of such objects.
URI: https://hdl.handle.net/10321/5841
ISSN: 1063-777X
1090-6517 (Online)
DOI: 10.1063/10.0003166
Appears in Collections:Research Publications (Systems Science)

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