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Related papers: Scalar Resonant Relaxation of Stars Around a Massi…

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We demonstrate the existence of an enhanced rate of angular momentum relaxation in nearly Keplerian star clusters, such as those found in the centers of galactic nuclei containing massive black holes. The enhanced relaxation arises because…

Astrophysics · Physics 2009-10-28 Kevin P. Rauch , Scott Tremaine

In the vicinity of a massive black hole, stars move on precessing Keplerian orbits. The mutual stochastic gravitational torques between the stellar orbits drive a rapid reorientation of their orbital planes, through a process called vector…

Astrophysics of Galaxies · Physics 2019-10-09 Jean-Baptiste Fouvry , Ben Bar-Or , Pierre-Henri Chavanis

Supermassive black holes in the centre of galaxies dominate the gravitational potential of their surrounding stellar clusters. In these dense environments, stars follow nearly Keplerian orbits, which get slowly distorted as a result of the…

Resonant relaxation has been discussed as an efficient process that changes the angular momenta of stars orbiting around a central supermassive black hole due to the fluctuating gravitational field of the stellar cluster. Other spherical…

Astrophysics of Galaxies · Physics 2019-06-26 Yohai Meiron , Bence Kocsis

The orbits of stars close to a massive black hole are nearly Keplerian ellipses. Such orbits exert long term torques on each other, which lead to an enhanced angular momentum relaxation known as resonant relaxation. Under certain…

Astrophysics · Physics 2009-06-23 M. Atakan Gürkan , Clovis Hopman

The coherent torques between stars on orbits near massive black holes (MBHs) lead to resonant angular momentum relaxation. Due to the fact that orbits are Keplerian to good approximation, the torques efficiently change the magnitude of the…

Astrophysics · Physics 2009-11-11 Clovis Hopman , Tal Alexander

Supermassive black holes dominate the gravitational potential in galactic nuclei. In these dense environments, stars follow nearly Keplerian orbits and see their orbital planes relax through the potential fluctuations generated by the…

Astrophysics of Galaxies · Physics 2022-07-06 Nathan Magnan , Jean-Baptiste Fouvry , Christophe Pichon , Pierre-Henri Chavanis

Stars bound to a supermassive black hole interact gravitationally. Persistent torques acting between stellar orbits lead to the rapid resonant relaxation of the orbital orientation vectors ("vector" resonant relaxation) and slower…

Astrophysics of Galaxies · Physics 2015-06-19 Bence Kocsis , Scott Tremaine

Globular clusters contain a finite number of stars. As a result, they inevitably undergo secular evolution (`relaxation') causing their mean distribution function (DF) to evolve on long timescales. On one hand, this long-term evolution may…

Astrophysics of Galaxies · Physics 2021-09-29 Jean-Baptiste Fouvry , Chris Hamilton , Simon Rozier , Christophe Pichon

Globular clusters are dense stellar systems whose core slowly contracts under the effect of self-gravity. The rate of this process was recently found to be directly linked to the initial amount of velocity anisotropy: tangentially…

Astrophysics of Galaxies · Physics 2022-06-01 Kerwann Tep , Jean-Baptiste Fouvry , Christophe Pichon

Stars around a massive black hole (MBH) move on nearly fixed Keplerian orbits, in a centrally-dominated potential. The random fluctuations of the discrete stellar background cause small potential perturbations, which accelerate the…

Astrophysics of Galaxies · Physics 2014-12-04 Ben Bar-Or , Tal Alexander

Resonant relaxation (RR) of orbital angular momenta occurs near massive black holes (MBHs) where the stellar orbits are nearly Keplerian and so do not precess significantly. The resulting coherent torques efficiently change the magnitude of…

Astrophysics · Physics 2009-11-11 Clovis Hopman , Tal Alexander

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…

High Energy Astrophysical Phenomena · Physics 2024-06-13 Karamveer Kaur , Barak Rom , Re'em Sari

Collisional relaxation describes the stochastic process with which a self-gravitating system near equilibrium evolves in phase space due to the fluctuating gravitational field of the system. The characteristic timescale of this process is…

Astrophysics of Galaxies · Physics 2018-03-28 Yohai Meiron , Bence Kocsis

We present a first-principles theory of Resonant Relaxation (RR) of a low mass stellar system orbiting a more massive black hole (MBH). We first extend the kinetic theory of Gilbert (1968) to include the Keplerian field of a black hole of…

Astrophysics of Galaxies · Physics 2016-03-23 S. Sridhar , Jihad R. Touma

We investigate the rate of orbital orientation dilution of young stellar clusters in the vicinity of supermassive black holes. Within the framework of vector resonant relaxation, we predict the time evolution of the two-point correlation…

Astrophysics of Galaxies · Physics 2020-10-28 Juan Giral Martínez , Jean-Baptiste Fouvry , Christophe Pichon

Resonant relaxation is a novel form of two-body relaxation that arises in nearly Keplerian disks such as protoplanetary disks. Resonant relaxation does not affect the semimajor axes of the particles, but enhances relaxation of particle…

Astrophysics · Physics 2009-10-30 Scott Tremaine

Vector resonant relaxation (VRR) is known to be the fastest gravitational process that shapes the geometry of stellar orbits in nuclear star clusters. This leads to the realignment of the orbital planes on the corresponding VRR time scale…

Astrophysics of Galaxies · Physics 2023-02-01 Gergely Máthé , Ákos Szölgyén , Bence Kocsis

[abridged] Energy relaxation around a massive black hole (MBH) is key to establishing the dynamical state of galactic nuclei, and the nature of close stellar interactions with the MBH. The standard description of relaxation as diffusion…

Astrophysics of Galaxies · Physics 2015-06-11 Ben Bar-Or , Gábor Kupi , Tal Alexander

This paper is the third in a series presenting the results of direct numerical integrations of the Fokker-Planck equation for stars orbiting a supermassive black hole (SBH) at the center of a galaxy. The algorithm of Paper II included…

Astrophysics of Galaxies · Physics 2016-03-01 David Merritt
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