The authors find strong Bayesian evidence for orbital decay in the QPE source GSN 069 and report a likely T ~ M^0.8 scaling among low-eccentricity QPE sources.
Semi-Analytical Fokker Planck Models for Nuclear Star Clusters
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abstract
We study the dynamics of nuclear star clusters, the dense stellar environments surrounding massive black holes in the centers of galaxies. We consider angular momentum diffusion due to two-body scatterings among stellar objects and energy advection due to gravitational wave emission upon interaction with the central massive black hole. Such dynamics is described by a two-dimensional Fokker-Planck equation in energy-angular momentum space. Focusing on the transition between the diffusion-dominated region and the advection-dominated one, we utilize self-similarity to obtain a full solution for the Fokker-Planck equation. This solution provides the density and flux of the stellar objects in nuclear star clusters. This improves the rate estimates for extreme mass-ratio inspirals, and has interesting implications for a new class of galactic center transients called quasi-periodic eruptions.
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Secular evolution of quasi-periodic eruptions
The authors find strong Bayesian evidence for orbital decay in the QPE source GSN 069 and report a likely T ~ M^0.8 scaling among low-eccentricity QPE sources.