Time-dependent nuclear energy-density functional theory toolkit for neutron star crust: Dynamics of a nucleus in a neutron superfluid

Fuente: arXiv
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Main Authors: Pȩcak, Daniel, Zdanowicz, Agata, Chamel, Nicolas, Magierski, Piotr, Wlazłowski, Gabriel
Format: Preprint
Published: 2024
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author Pȩcak, Daniel
Zdanowicz, Agata
Chamel, Nicolas
Magierski, Piotr
Wlazłowski, Gabriel
author_facet Pȩcak, Daniel
Zdanowicz, Agata
Chamel, Nicolas
Magierski, Piotr
Wlazłowski, Gabriel
contents We present a new numerical tool designed to probe the dense layers of neutron star crusts. It is based on the time-dependent Hartree-Fock-Bogoliubov theory with generalized Skyrme nuclear energy-density functionals of the Brussels-Montreal family. We use it to study the time evolution of a nucleus accelerating through superfluid neutron medium in the inner crust of a neutron star. We extract an effective mass in the low velocity limit. We observe a threshold velocity and specify mechanisms of dissipation: phonon emission, Cooper pairs breaking, and vortex rings creation. These microscopic effects are of key importance for understanding various neutron star phenomena. Moreover, the mechanisms we describe are general and apply also to other fermionic superfluids interacting with obstacles like liquid helium or ultracold gases.
format Preprint
id arxiv_https___arxiv_org_abs_2403_17499
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Time-dependent nuclear energy-density functional theory toolkit for neutron star crust: Dynamics of a nucleus in a neutron superfluid
Pȩcak, Daniel
Zdanowicz, Agata
Chamel, Nicolas
Magierski, Piotr
Wlazłowski, Gabriel
Nuclear Theory
High Energy Astrophysical Phenomena
Superconductivity
We present a new numerical tool designed to probe the dense layers of neutron star crusts. It is based on the time-dependent Hartree-Fock-Bogoliubov theory with generalized Skyrme nuclear energy-density functionals of the Brussels-Montreal family. We use it to study the time evolution of a nucleus accelerating through superfluid neutron medium in the inner crust of a neutron star. We extract an effective mass in the low velocity limit. We observe a threshold velocity and specify mechanisms of dissipation: phonon emission, Cooper pairs breaking, and vortex rings creation. These microscopic effects are of key importance for understanding various neutron star phenomena. Moreover, the mechanisms we describe are general and apply also to other fermionic superfluids interacting with obstacles like liquid helium or ultracold gases.
title Time-dependent nuclear energy-density functional theory toolkit for neutron star crust: Dynamics of a nucleus in a neutron superfluid
topic Nuclear Theory
High Energy Astrophysical Phenomena
Superconductivity
url https://arxiv.org/abs/2403.17499