English

Chirping compact stars: gravitational radiation and detection degeneracy with binary systems A conceptual pathfinder for space-based gravitational-wave observatories

Astrophysics of Galaxies 2023-10-12 v2 General Relativity and Quantum Cosmology

Abstract

Compressible, Riemann S-type ellipsoids can emit gravitational waves (GWs) with a chirp-like behavior (hereafter chirping ellipsoids, CELs). We show that the GW frequency-amplitude evolution of CELs (mass 1\sim 1~M_\odot, radius 103\sim10^3~km, polytropic equation of state with index n3n\approx 3) is indistinguishable from that emitted by double white dwarfs (DWDs) and by extreme mass-ratio inspirals (EMRIs) composed of an intermediate-mass (e.g.~103 M10^3~M_\odot) black hole and a planet-like (e.g.~104 M10^{-4}~M_\odot) companion, in a specific frequency interval within the detector sensitivity band in which the GWs of all these systems are quasi-monochromatic. We estimate that for reasonable astrophysical assumptions, the rates in the local Universe of CELs, DWDs and EMRIs in the mass range considered here, are very similar, posing a detection-degeneracy challenge for space-based GW detectors. The astrophysical implications of this CEL-binary detection degeneracy by space-based GW-detection facilities, are outlined.

Keywords

Cite

@article{arxiv.1907.10532,
  title  = {Chirping compact stars: gravitational radiation and detection degeneracy with binary systems A conceptual pathfinder for space-based gravitational-wave observatories},
  author = {J. F. Rodriguez and J. A. Rueda and R. Ruffini and J. I. Zuluaga and J. M. Blanco-Iglesias and P. Loren-Aguilar},
  journal= {arXiv preprint arXiv:1907.10532},
  year   = {2023}
}

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