Identifying intermediate mass binary black hole mergers in AGN disks using LISA

Fuente: arXiv
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Main Authors: Roy, Poulami Dutta, Mahapatra, Parthapratim, Samajdar, Anuradha, Arun, K. G.
Format: Preprint
Published: 2025
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author Roy, Poulami Dutta
Mahapatra, Parthapratim
Samajdar, Anuradha
Arun, K. G.
author_facet Roy, Poulami Dutta
Mahapatra, Parthapratim
Samajdar, Anuradha
Arun, K. G.
contents We show that Laser Interferometer Space Antenna can uniquely identify the sites of intermediate-mass binary black hole (IMBBH) mergers if they occur in Active Galactic Nuclei (AGN) disks with a gas density $ρ\geq10^{-12} \, {\rm g/cc}$ via measurement of dynamical friction effect in the gravitational waveform. We find that even a single observation of a gravitational wave source with a total mass of $10^3 M_{\odot}$ and a mass ratio of 2 at a luminosity distance of 3 Gpc is sufficient to confidently associate the merger to be in an AGN disk with a density $\sim 10^{-12} \, {\rm g/cc}$, as it allows estimation of the density with an error bar $O(100\%)$. This provides a new way of inferring AGN disk densities that complement traditional X-ray observations. Further, we find that neglecting the presence of environmental effects in the waveform models used for parameter estimation can bias the chirp mass, mass ratio and arrival time of a merger. If not corrected, this can significantly impact our ability to carry out multiband data analysis of IMBBHs that combines information from LISA and ground-based gravitational wave detectors.
format Preprint
id arxiv_https___arxiv_org_abs_2503_11721
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Identifying intermediate mass binary black hole mergers in AGN disks using LISA
Roy, Poulami Dutta
Mahapatra, Parthapratim
Samajdar, Anuradha
Arun, K. G.
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
General Relativity and Quantum Cosmology
We show that Laser Interferometer Space Antenna can uniquely identify the sites of intermediate-mass binary black hole (IMBBH) mergers if they occur in Active Galactic Nuclei (AGN) disks with a gas density $ρ\geq10^{-12} \, {\rm g/cc}$ via measurement of dynamical friction effect in the gravitational waveform. We find that even a single observation of a gravitational wave source with a total mass of $10^3 M_{\odot}$ and a mass ratio of 2 at a luminosity distance of 3 Gpc is sufficient to confidently associate the merger to be in an AGN disk with a density $\sim 10^{-12} \, {\rm g/cc}$, as it allows estimation of the density with an error bar $O(100\%)$. This provides a new way of inferring AGN disk densities that complement traditional X-ray observations. Further, we find that neglecting the presence of environmental effects in the waveform models used for parameter estimation can bias the chirp mass, mass ratio and arrival time of a merger. If not corrected, this can significantly impact our ability to carry out multiband data analysis of IMBBHs that combines information from LISA and ground-based gravitational wave detectors.
title Identifying intermediate mass binary black hole mergers in AGN disks using LISA
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2503.11721