Isotropic-Nematic Phase Transitions in Gravitational Systems
arXiv:1701.03271 · doi:10.3847/1538-4357/aa7141
Abstract
We examine dense self-gravitating stellar systems dominated by a central potential, such as nuclear star clusters hosting a central supermassive black hole. Different dynamical properties of these systems evolve on vastly different timescales. In particular, the orbital-plane orientations are typically driven into internal thermodynamic equilibrium by vector resonant relaxation before the orbital eccentricities or semimajor axes relax. We show that the statistical mechanics of such systems exhibit a striking resemblance to liquid crystals, with analogous ordered-nematic and disordered-isotropic phases. The ordered phase consists of bodies orbiting in a disk in both directions, with the disk thickness depending on temperature, while the disordered phase corresponds to a nearly isotropic distribution of the orbit normals. We show that below a critical value of the total angular momentum, the system undergoes a first-order phase transition between the ordered and disordered phases. At the critical point the phase transition becomes second-order while for higher angular momenta there is a smooth crossover. We also find metastable equilibria containing two identical disks with mutual inclinations between and .
33 pages, 23 figures; minor changes to match the published version
References in corpus (16)
- Observation of Gravitational Waves from a Binary Black Hole Merger
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Negative Absolute Temperature for Motional Degrees of Freedom
- The old nuclear star cluster in the Milky Way: dynamics, mass, statistical parallax, and black hole mass
- The AIMSS Project I: Bridging the Star Cluster - Galaxy Divide
- Gibbs, Boltzmann, and negative temperatures
- Thermodynamic versus statistical nonequivalence of ensembles for the mean-field Blume-Emery-Griffiths model
- The statistical mechanics of planet orbits
- A numerical study of vector resonant relaxation
- Construction of microcanonical entropy on thermodynamic pillars
- Resonant relaxation near a massive black hole: the dependence on eccentricity
- On the dispute between Boltzmann and Gibbs entropy
- The statistical mechanics of relativistic orbits around a massive black hole
- Relativistic Gravothermal Instabilities
- Gravothermal Catastrophe with a Cosmological Constant
- Stellar Dynamics around a Massive Black Hole III: Resonant Relaxation of Axisymmetric Discs
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- Black holes, gravitational waves and fundamental physics: a roadmap
- Black Hole Disks in Galactic Nuclei
- Topology of Black Hole Binary-Single Interactions
- Scalar Resonant Relaxation of Stars Around a Massive Black Hole
- Relaxation in self-gravitating systems
- Double Gravitational Wave Mergers
- Vector Resonant Relaxation of Stars around a Massive Black Hole
- The Thermodynamics of Rotating Black-Hole Star Clusters
- Isotropic-Nematic Phase Transitions in Gravitational Systems II: Higher Order Multipoles
- Secular dynamics of long-range interacting particles on a sphere in the axisymmetric limit
- Binary black hole growth by gas accretion in stellar clusters
- Anisotropic Mass Segregation in Rotating Globular Clusters
- Resonant relaxation in globular clusters
- A numerical study of stellar discs in galactic nuclei
- Orbital alignment and mass segregation in galactic nuclei via vector resonant relaxation
- Statistical Mechanics of Gravitational Systems with Regular Orbits: Rigid Body Model of Vector Resonant Relaxation
- Resonant Dynamical Friction Around a Super-Massive Black Hole: Analytical Description
- Order-disorder phase transition in black-hole star clusters -- III. A mono-energetic cluster
- Black Hole Discs and Spheres in Galactic Nuclei -- Exploring the Landscape of Vector Resonant Relaxation Equilibria
- Young stellar cluster dilution near supermassive black holes: the impact of Vector Resonant Relaxation on neighbour separation
- Astrophysics with the Laser Interferometer Space Antenna
- Gravo-thermal catastrophe in gravitational collapse and energy progenitor of Gamma-Ray Bursts
- Gravitational Brownian motion as inhomogeneous diffusion: black hole populations in globular clusters
- Resonant Dynamical Friction in Nuclear Star Clusters: Rapid Alignment of an Intermediate-mass Black Hole with a Stellar Disk
- Constraining Axion Dark Matter with Galactic-Centre Resonant Dynamics