Near-exponential surface densities as hydrostatic, nonequilibrium profiles in galaxy discs
arXiv:1609.08957 · doi:10.1093/mnras/stw2462
Abstract
Apparent exponential surface density profiles are nearly universal in galaxy discs across Hubble types, over a wide mass range, and a diversity of gravitational potential forms. Several processes have been found to produce exponential profiles, including the actions of bars and spirals, and clump scattering, with star scattering a common theme in these. Based on reasonable physical constraints, such as minimal entropy gradients, we propose steady state distribution functions for disc stars, applicable over a range of gravitational potentials. The resulting surface density profiles are generally a power-law term times a Sersic-type exponential. Over a modest range of Sersic index values, these profiles are often indistinguishable from Type I exponentials, except at the innermost radii. However, in certain parameter ranges these steady states can appear as broken, Type II or III profiles. The corresponding velocity dispersion profiles are low order power-laws. A chemical potential associated with scattering can help understand the effects of long range scattering. The steady profiles are found to persist through constant velocity expansions or contractions in evolving discs. The proposed distributions and profiles are simple and solve the stellar hydrodynamic equations. They may be especially relevant to thick discs, which have settled to a steady form via scattering.
12 pages, 4 figures, no tables, accepted for the MNRAS
References in corpus (17)
- Structural Properties of Pseudo-Bulges, Classical Bulges and Elliptical Galaxies: an SDSS Perspective
- 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
- Clumpy Galaxies in CANDELS. I. The Definition of UV Clumps and the Fraction of Clumpy Galaxies at 0.5<z<3
- The Outer Disks of Early-Type Galaxies. I. Surface-Brightness Profiles of Barred Galaxies
- Color Profiles of Spiral Galaxies: Clues on Outer-Disk Formation Scenarios
- Antitruncated Stellar Disks via Minor Mergers
- Parametrizing the Stellar Haloes of Galaxies
- The effect of radial migration on galactic disks
- On the formation of extended galactic disks by tidally disrupted dwarf galaxies
- An N-body/SPH Study of Isolated Galaxy Mass Density Profiles
- The Structure and Stellar Content of the Outer Disks of Galaxies: A New View from the Pan-STARRS1 Medium Deep Survey
- How to bend galaxy disc profiles: the role of halo spin
- Shrinking Galaxy Disks with Fountain-Driven Accretion from the Halo
- Exponential Disks from Stellar Scattering: III. Stochastic Models
- Smoothing Rotation Curves and Mass Profiles
- Evolution of gaseous disk viscosity driven by supernova explosion in star-forming galaxies at high redshift
Cited by in corpus (3)
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- Power-law Sersic profiles in hydrostatic stellar galaxy discs
- Orbits and action changes during star-clump encounters responsible for the origin of exponential discs in dwarf galaxies