Examining the influence of anisotropy on the fundamental mode of nonradial oscillation in neutron stars on a complete general relativistic scheme

Fuente: arXiv
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Main Authors: Arbañil, José D. V., Cavalheiro, Gabriel O., Alves, Victor B. T., Pretel, Juan M. Z., Flores, César O. V., Lenzi, César H.
Format: Preprint
Published: 2025
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_version_ 1866911717174280192
author Arbañil, José D. V.
Cavalheiro, Gabriel O.
Alves, Victor B. T.
Pretel, Juan M. Z.
Flores, César O. V.
Lenzi, César H.
author_facet Arbañil, José D. V.
Cavalheiro, Gabriel O.
Alves, Victor B. T.
Pretel, Juan M. Z.
Flores, César O. V.
Lenzi, César H.
contents The anisotropic influence on the $f$-mode frequency of oscillations and dimensionless tidal deformability of neutron stars is analyzed by employing the nonradial oscillation equations for the complete general relativity frame and tidal deformability equations, which are derived and modified from their standard form to introduce the anisotropic factor. The fluid inside the compact star obeys an equation of state constructed by matching microscopic nuclear and perturbative QCD calculations through a piecewise polytropic interpolating scheme. For the anisotropic profile, we use a local anisotropy which is regular along the whole star and vanishes both at the center and on the star's surface. We show that the \(f\)-mode oscillation frequency and dimensionless tidal deformability are noticeably affected by anisotropy. Finally, we investigate the correlation between the dimensionless tidal deformability inferred from the GW$170817$ event and the anisotropy parameter.
format Preprint
id arxiv_https___arxiv_org_abs_2509_12438
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Examining the influence of anisotropy on the fundamental mode of nonradial oscillation in neutron stars on a complete general relativistic scheme
Arbañil, José D. V.
Cavalheiro, Gabriel O.
Alves, Victor B. T.
Pretel, Juan M. Z.
Flores, César O. V.
Lenzi, César H.
General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
The anisotropic influence on the $f$-mode frequency of oscillations and dimensionless tidal deformability of neutron stars is analyzed by employing the nonradial oscillation equations for the complete general relativity frame and tidal deformability equations, which are derived and modified from their standard form to introduce the anisotropic factor. The fluid inside the compact star obeys an equation of state constructed by matching microscopic nuclear and perturbative QCD calculations through a piecewise polytropic interpolating scheme. For the anisotropic profile, we use a local anisotropy which is regular along the whole star and vanishes both at the center and on the star's surface. We show that the \(f\)-mode oscillation frequency and dimensionless tidal deformability are noticeably affected by anisotropy. Finally, we investigate the correlation between the dimensionless tidal deformability inferred from the GW$170817$ event and the anisotropy parameter.
title Examining the influence of anisotropy on the fundamental mode of nonradial oscillation in neutron stars on a complete general relativistic scheme
topic General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2509.12438