Distribution function-based modelling of discrete kinematic datasets, in application to the Milky Way nuclear star cluster

Fuente: arXiv
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Main Authors: Vasiliev, Eugene, Feldmeier-Krause, Anja, Sormani, Mattia C.
Format: Preprint
Published: 2026
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author Vasiliev, Eugene
Feldmeier-Krause, Anja
Sormani, Mattia C.
author_facet Vasiliev, Eugene
Feldmeier-Krause, Anja
Sormani, Mattia C.
contents We present a method for constructing dynamical models of stellar systems described by distribution functions and constrained by discrete-kinematic data. We implement various improvements compared to earlier applications of this approach, demonstrating with several examples that it can deliver meaningful constraints on the mass distribution even in situations when the density profile of tracers and the selection function of the kinematic catalogue are unknown. We then apply this method to the Milky Way nuclear star cluster, using kinematic data (line-of-sight velocities and proper motions) for a few thousand stars within 10 pc from the central black hole, accounting for the contributions of the nuclear stellar disc and the Galactic bar. We measure the mass of the black hole to be 4x10^6 Msun with a 10% uncertainty, which agrees with the more precise value obtained by the GRAVITY instrument. The inferred stellar mass profile depends on the choice of kinematic data, but the total mass within 10 pc is well constrained in all models to be (2.0-2.3)x10^7 Msun. We make our models publicly available as part of the Agama software framework for galactic dynamics.
format Preprint
id arxiv_https___arxiv_org_abs_2603_29502
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Distribution function-based modelling of discrete kinematic datasets, in application to the Milky Way nuclear star cluster
Vasiliev, Eugene
Feldmeier-Krause, Anja
Sormani, Mattia C.
Astrophysics of Galaxies
We present a method for constructing dynamical models of stellar systems described by distribution functions and constrained by discrete-kinematic data. We implement various improvements compared to earlier applications of this approach, demonstrating with several examples that it can deliver meaningful constraints on the mass distribution even in situations when the density profile of tracers and the selection function of the kinematic catalogue are unknown. We then apply this method to the Milky Way nuclear star cluster, using kinematic data (line-of-sight velocities and proper motions) for a few thousand stars within 10 pc from the central black hole, accounting for the contributions of the nuclear stellar disc and the Galactic bar. We measure the mass of the black hole to be 4x10^6 Msun with a 10% uncertainty, which agrees with the more precise value obtained by the GRAVITY instrument. The inferred stellar mass profile depends on the choice of kinematic data, but the total mass within 10 pc is well constrained in all models to be (2.0-2.3)x10^7 Msun. We make our models publicly available as part of the Agama software framework for galactic dynamics.
title Distribution function-based modelling of discrete kinematic datasets, in application to the Milky Way nuclear star cluster
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2603.29502