Radiative losses and radiation-reaction effects at the first post-Newtonian order in Einstein-Cartan theory

Fuente: arXiv
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Autores principales: De Falco, Vittorio, Battista, Emmanuele, Usseglio, Davide, Capozziello, Salvatore
Formato: Preprint
Publicado: 2024
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author De Falco, Vittorio
Battista, Emmanuele
Usseglio, Davide
Capozziello, Salvatore
author_facet De Falco, Vittorio
Battista, Emmanuele
Usseglio, Davide
Capozziello, Salvatore
contents Gravitational radiation-reaction phenomena occurring in the dynamics of inspiralling compact binary systems are investigated at the first post-Newtonian order beyond the quadrupole approximation in the context of Einstein-Cartan theory, where quantum spin effects are modeled via the Weyssenhoff fluid. We exploit balance equations for the energy and angular momentum to determine the binary orbital decay until the two bodies collide. Our framework deals with both quasi-elliptic and quasi-circular trajectories, which are then smoothly connected. Key observables like the laws of variation of the orbital phase and frequency characterizing the quasi-circular motion are derived analytically. We conclude our analysis with an estimation of the spin contributions at the merger, which are examined both in the time domain and the Fourier frequency space through the stationary wave approximation.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13374
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Radiative losses and radiation-reaction effects at the first post-Newtonian order in Einstein-Cartan theory
De Falco, Vittorio
Battista, Emmanuele
Usseglio, Davide
Capozziello, Salvatore
General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
High Energy Physics - Theory
Mathematical Physics
Gravitational radiation-reaction phenomena occurring in the dynamics of inspiralling compact binary systems are investigated at the first post-Newtonian order beyond the quadrupole approximation in the context of Einstein-Cartan theory, where quantum spin effects are modeled via the Weyssenhoff fluid. We exploit balance equations for the energy and angular momentum to determine the binary orbital decay until the two bodies collide. Our framework deals with both quasi-elliptic and quasi-circular trajectories, which are then smoothly connected. Key observables like the laws of variation of the orbital phase and frequency characterizing the quasi-circular motion are derived analytically. We conclude our analysis with an estimation of the spin contributions at the merger, which are examined both in the time domain and the Fourier frequency space through the stationary wave approximation.
title Radiative losses and radiation-reaction effects at the first post-Newtonian order in Einstein-Cartan theory
topic General Relativity and Quantum Cosmology
High Energy Astrophysical Phenomena
High Energy Physics - Theory
Mathematical Physics
url https://arxiv.org/abs/2401.13374