Fully Relativistic Treatment of Extreme Mass-Ratio Inspirals in Collisionless Environments

Authors
Publication date 21-11-2025
Journal Physical Review Letters
Article number 211401
Volume | Issue number 135 | 21
Number of pages 9
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
  • Faculty of Science (FNWI) - Institute of Physics (IoP)
Abstract

Future mHz gravitational wave interferometers will precisely probe massive black hole environments, such as accretion disks, cold dark matter overdensities, and clouds of ultralight bosons, as long as we can accurately model the dephasing they induce on the waveform of extreme mass-ratio inspirals (EMRIs). Most existing models rely on extrapolations from Newtonian results to model the interaction of the small black hole in an EMRI system with the environment surrounding the massive black hole. Here, we present a fully relativistic formalism to model such interaction with collisionless environments, focusing on the case of cold dark matter overdensities, like "spikes"and "mounds."We implement our new formalism in the fastemriwaveforms framework, and show that the resulting waveforms are significantly different from those based on a Newtonian treatment of environmental effects. Our results indicate that a fully relativistic treatment is essential to capture the environmental dephasing of gravitational wave signals from EMRIs accurately.

Document type Article
Note With supplement
Language English
Published at https://doi.org/10.1103/s4wh-x6c4
Other links https://www.scopus.com/pages/publications/105022267416
Downloads
s4wh-x6c4 (Embargo up to 2026-05-17) (Final published version)
Supplementary materials
Supplement (Embargo up to 2026-05-17)
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