Influence of the gravitational darkening effect on the spectrum of a hot, rapidly rotating neutron star. II. Iron lines

Fuente: arXiv
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Main Authors: Majczyna, Agnieszka, Madej, Jerzy, Różańska, Agata, Należyty, Mirosław
Format: Preprint
Published: 2024
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author Majczyna, Agnieszka
Madej, Jerzy
Różańska, Agata
Należyty, Mirosław
author_facet Majczyna, Agnieszka
Madej, Jerzy
Różańska, Agata
Należyty, Mirosław
contents Rapidly rotating neutron stars are similar to highly flattened ellipsoids. Observed spectra of flattened stars must exhibit effects of non spherical shape and the gravitational darkening. We examined in detail the influence of both effects on the observed central energies and profiles of lines of highly ionized iron, FeXXV and FeXXVI. We note that the gravitational darkening effect do not change the central energy of lines. What is important, spectra of neutron stars that rotate with different frequencies and are seen at various inclinations angles differ significantly. The appearance and the depth of lines strongly depends on the parameters like the inclination angle of the star or the frequency of the star rotation. In this paper we clearly show that the gravitational darkening effect should be included in realistic model of the atmospheres of the neutron stars.
format Preprint
id arxiv_https___arxiv_org_abs_2405_08507
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Influence of the gravitational darkening effect on the spectrum of a hot, rapidly rotating neutron star. II. Iron lines
Majczyna, Agnieszka
Madej, Jerzy
Różańska, Agata
Należyty, Mirosław
High Energy Astrophysical Phenomena
Rapidly rotating neutron stars are similar to highly flattened ellipsoids. Observed spectra of flattened stars must exhibit effects of non spherical shape and the gravitational darkening. We examined in detail the influence of both effects on the observed central energies and profiles of lines of highly ionized iron, FeXXV and FeXXVI. We note that the gravitational darkening effect do not change the central energy of lines. What is important, spectra of neutron stars that rotate with different frequencies and are seen at various inclinations angles differ significantly. The appearance and the depth of lines strongly depends on the parameters like the inclination angle of the star or the frequency of the star rotation. In this paper we clearly show that the gravitational darkening effect should be included in realistic model of the atmospheres of the neutron stars.
title Influence of the gravitational darkening effect on the spectrum of a hot, rapidly rotating neutron star. II. Iron lines
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2405.08507