An Approximate Kerr-Newman-like Metric Endowed with a Magnetic Dipole and Mass Quadrupole

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Auteur principal: Frutos-Alfaro, Francisco
Format: Preprint
Publié: 2023
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author Frutos-Alfaro, Francisco
author_facet Frutos-Alfaro, Francisco
contents Approximate all-terrain spacetimes for astrophysical applications are presented. The metrics possess five relativistic multipole moments, namely mass, rotation, mass quadrupole, charge, and magnetic dipole moment. All these spacetimes approximately satisfy the Einstein-Maxwell field equations. The first metric is generated by means of the Hoenselaers-Perjés method from given relativistic multipoles. The second metric is a perturbation of the Kerr-Newman metric, which makes it a relevant approximation for astrophysical calculations. The last metric is an extension of the Hartle-Thorne metric that is important for obtaining internal models of compact objects perturbatively. The electromagnetic field is calculated using Cartan forms for locally nonrotating observers. These spacetimes are relevant to infer properties of compact objects from astrophysical observations. Furthermore, the numerical implementations of these metrics are straightforward, making them versatile for simulating the potential astrophysical applications.
format Preprint
id arxiv_https___arxiv_org_abs_2308_00270
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle An Approximate Kerr-Newman-like Metric Endowed with a Magnetic Dipole and Mass Quadrupole
Frutos-Alfaro, Francisco
General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
Approximate all-terrain spacetimes for astrophysical applications are presented. The metrics possess five relativistic multipole moments, namely mass, rotation, mass quadrupole, charge, and magnetic dipole moment. All these spacetimes approximately satisfy the Einstein-Maxwell field equations. The first metric is generated by means of the Hoenselaers-Perjés method from given relativistic multipoles. The second metric is a perturbation of the Kerr-Newman metric, which makes it a relevant approximation for astrophysical calculations. The last metric is an extension of the Hartle-Thorne metric that is important for obtaining internal models of compact objects perturbatively. The electromagnetic field is calculated using Cartan forms for locally nonrotating observers. These spacetimes are relevant to infer properties of compact objects from astrophysical observations. Furthermore, the numerical implementations of these metrics are straightforward, making them versatile for simulating the potential astrophysical applications.
title An Approximate Kerr-Newman-like Metric Endowed with a Magnetic Dipole and Mass Quadrupole
topic General Relativity and Quantum Cosmology
Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2308.00270