Litcius/Paper detail

1S0 Pairing Gaps, Chemical Potentials and Entrainment Matrix in Superfluid Neutron-Star Cores for the Brussels–Montreal Functionals

Valentin Allard, N. Chamel

2021Universe17 citationsDOIOpen Access PDF

Abstract

Temperature and velocity-dependent 1S0 pairing gaps, chemical potentials and entrainment matrix in dense homogeneous neutron–proton superfluid mixtures constituting the outer core of neutron stars, are determined fully self-consistently by solving numerically the time-dependent Hartree–Fock–Bogoliubov equations over the whole range of temperatures and flow velocities for which superfluidity can exist. Calculations have been made for npeμ in beta-equilibrium using the Brussels–Montreal functional BSk24. The accuracy of various approximations is assessed and the physical meaning of the different velocities and momentum densities appearing in the theory is clarified. Together with the unified equation of state published earlier, the present results provide consistent microscopic inputs for modeling superfluid neutron-star cores.

Topics & Concepts

PhysicsPairingNeutron starSuperfluidityEntrainment (biomusicology)Star (game theory)Matrix (chemical analysis)Nuclear physicsTheoretical physicsAstrophysicsQuantum mechanicsSuperconductivityAcousticsMaterials scienceComposite materialRhythmPulsars and Gravitational Waves ResearchHigh-pressure geophysics and materialsNuclear physics research studies