Stellar scattering and the formation of exponential discs in self-gravitating systems
arXiv:2009.01929 · doi:10.1093/mnras/staa2750
Abstract
We show, using the N-body code GADGET-2, that stellar scattering by massive clumps can produce exponential discs, and the effectiveness of the process depends on the mass of scattering centres, as well as the stability of the galactic disc. Heavy, dense scattering centres in a less stable disc generate an exponential profile quickly, with a timescale shorter than 1 Gyr. The profile evolution due to scattering can make a near-exponential disc under various initial stellar distributions. This result supports analytic theories that predict the scattering processes always favour the zero entropy gradient solution to the Jeans/Poisson equations, whose profile is a near-exponential. Profile changes are accompanied by disc thickening, and a power-law increase in stellar velocity dispersion in both vertical and radial directions is also observed through the evolution. Close encounters between stars and clumps can produce abrupt changes in stellar orbits and shift stars radially. These events can make trajectories more eccentric, but many leave eccentricities little changed. On average, orbital eccentricities of stars increase moderately with time.
14 pages, 19 figures
References in corpus (12)
- Rapid formation of exponential disks and bulges at high redshift from the dynamical evolution of clump cluster and chain galaxies
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- The effect of radial migration on galactic disks
- On the formation of extended galactic disks by tidally disrupted dwarf galaxies
- Geometric properties of galactic discs with clumpy episodes
- The formation of exponential disk galaxies in MOND
- Constraints on Radial Migration in Spiral Galaxies - II. Angular momentum distribution and preferential migration
- Migration and kinematics in growing disc galaxies with thin and thick discs
- Exponential Disks from Stellar Scattering: III. Stochastic Models
- When Cold Radial Migration is Hot: Constraints from Resonant Overlap
- Power-law Sersic profiles in hydrostatic stellar galaxy discs
- Entropy and Mass Distribution in Disc Galaxies
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