Exponential profiles from stellar scattering off interstellar clumps and holes in dwarf galaxy discs
arXiv:1704.03831 · doi:10.1093/mnras/stx918
Abstract
Holes and clumps in the interstellar gas of dwarf irregular galaxies are gravitational scattering centers that heat field stars and change their radial and vertical distributions. Because the gas structures are extended and each stellar scattering is relatively weak, the stellar orbits remain nearly circular and the net effect accumulates slowly over time. We calculate the radial profile of scattered stars with an idealized model and find that it approaches an equilibrium shape that is exponential, similar to the observed shapes of galaxy discs. Our models treat only scattering and have no bars or spiral arms, so the results apply mostly to dwarf irregular galaxies where there are no other obvious scattering processes. Stellar scattering by gaseous perturbations slows down when the stellar population gets thicker than the gas layer. An accreting galaxy with a growing thin gas layer can form multiple stellar exponential profiles from the inside-out, preserving the remnants of each Gyr interval in a sequence of ever-lengthening and thinning stellar subdiscs.
10 pages, 5 figures, MNRAS accepted
References in corpus (21)
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- Rapid formation of exponential disks and bulges at high redshift from the dynamical evolution of clump cluster and chain galaxies
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- The structure of galactic disks: Studying late-type spiral galaxies using SDSS
- Color Profiles of Spiral Galaxies: Clues on Outer-Disk Formation Scenarios
- On the Formation of Galactic Thick Disks
- Constraining the thick disc formation scenario of the Milky Way
- The Dearth of Neutral Hydrogen in Galactic Dwarf Spheroidal Galaxies
- The effect of radial migration on galactic disks
- A Star Formation Law for Dwarf Irregular Galaxies
- Dissecting simulated disc galaxies I: the structure of mono-age populations
- The relationship between mono-abundance and mono-age stellar populations in the Milky Way disk
- Formation of S0 galaxies through mergers. V. Antitruncated stellar discs resulting from major mergers
- Complexes of triggered star formation in supergiant shell of Holmberg II
- Evidence for the concurrent growth of thick discs and central mass concentrations from SG imaging
- How to bend galaxy disc profiles: the role of halo spin
- Properties of thick discs formed in clumpy galaxies
- Exponential Disks from Stellar Scattering: III. Stochastic Models
- Smoothing Rotation Curves and Mass Profiles
- High Resolution H I Distributions and Multi-Wavelength Analyses of Magellanic Spirals NGC 4618 and NGC 4625
- A Region of Violent Star Formation in the Irr Galaxy IC 10: Structure and Kinematics of Ionized and Neutral Gas
Cited by in corpus (16)
- Gaia reveals a metal-rich in-situ component of the local stellar halo
- The regulation of galaxy growth along the size-mass relation by star-formation, as traced by H in KMOS galaxies at 0.7 < z < 2.7
- The missing light of the Hubble Ultra Deep Field
- Convergence of Lobatto-type Runge-Kutta methods for partitioned differential-algebraic systems of index 2
- The formation of exponential disk galaxies in MOND
- Relationships between the Stellar, Gaseous, and Star Formation Disks in LITTLE THINGS Dwarf Irregular Galaxies: Indirect Evidence for Substantial Fractions of Dark Molecular Gas
- Stellar scattering and the formation of exponential discs in self-gravitating systems
- Power-law Sersic profiles in hydrostatic stellar galaxy discs
- Cold Exponential Disks From Interstellar Fountains
- Evolution of the anti-truncated stellar profiles of S0 galaxies since in the SHARDS survey: II - Structural and photometric evolution
- Difference in dwarf galaxy surface brightness profiles as a function of environment
- Orbits and action changes during star-clump encounters responsible for the origin of exponential discs in dwarf galaxies
- Exponential galaxy discs as the quasi-stationary distribution in a Markov chain model simulating stellar scattering
- Effects of coplanar satellite bands on galactic disc evolution
- Superbubbles as the source of dynamical friction: gas migration, stellar and dark matter contributions
- The impact of radial migration on disk galaxy star formation histories: II. Role of bar strength, disk thickness, and merger history