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Dancing above the abyss: Environmental effects and dark matter signatures in inspirals into massive black holes

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arxiv 2404.02808 v1 pith:I6HAOZ5P submitted 2024-04-03 gr-qc

classification gr-qc
keywords effectsenvironmentaldarkmatterinspiralsspikesblackholes
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In this dissertation, we look at environmental effects in extreme and intermediate mass ratio inspirals into massive black holes. In these systems, stellar mass compact objects orbit massive black holes and lose orbital energy due to gravitational wave emission and other dissipative forces. We explore environmental interactions with dark matter spikes, stellar distributions, accretion disks, and combine and compare them. We discuss the existence and properties of dark matter spikes in the presence of these environmental effects. The signatures of the environmental effects, such as the phase space flow, dephasing, deshifting of the periapse, and alignment with accretion disks, are examined. These signatures are quantified in isolated spike systems, in dry, and in wet inspirals. We generally find dark matter effects to be subdominant to the other environmental effects, but their impact on the waveform is still observable and identifiable. Lastly, the rates of inspirals and the impact of spikes are estimated. All of these results are obtained with the help of a code imripy that is published alongside. If dark matter spikes exist, they should be observable with space-based gravitational wave observatories

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Resonant DM scattering in the galactic center under the influence of EMRI

    gr-qc 2025-05 conditional novelty 6.0 of 10

    Repeated tidal resonances from an inspiralling EMRI secondary shift a dark matter particle's semi-major axis by less than one percent, leaving the DM spike nearly intact in the non-overlapping-orbit regime.

  2. Tidal Love numbers and quasi-normal modes of the Schwarzschild-Hernquist black hole

    gr-qc 2024-12 conditional novelty 6.0 of 10

    For a Schwarzschild black hole in a relativistic Hernquist dark matter halo, quasinormal-mode frequency shifts scale as (MDM/rs)^(3/2) rather than linearly, while tidal Love numbers are small and sensitive to the choi...

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