The nature of core formation in dark matter haloes: adiabatic or impulsive?
arXiv:1810.10024 · doi:10.1093/mnras/stz496
Abstract
It is well established that the central deficit of dark matter (DM) observed in many dwarf galaxies disagrees with the cuspy DM haloes predicted in the collision-less and cold DM (CDM) model. Plausible solutions to this problem are based on an effective energy deposition into the central halo with an origin that is either based on baryonic physics (e.g. supernova-driven gas blowouts; SNF) or on new DM physics (e.g. self-interacting DM, SIDM). We argue that the fundamental difference between the two is whether the process is impulsive or adiabatic, and explore novel ways to distinguishing them by looking at the response of stellar orbits. We perform idealised simulations of tracers embedded in a spherical halo, and model the creation of a kpc DM matter core in SIDM with and through SNF by impulsively removing a mass equivalent to of the halo's potential energy. Choosing idealised initial orbital configurations for the tracers, we find that radial actions are conserved (changed) in the SIDM (impulsive) case. The adiabaticity of the SIDM case prevents tracers from changing their orbital family during core formation whereas SNF separates tracers of initially the same family to a variety of orbits. We show that these key features remain in a cosmological halo, albeit for a few dynamical timescales. The number density and velocity dispersion profile of a Plummer sphere with pc change only marginally under adiabatic core formation, whereas SNF causes a substantial expansion of the sphere driving it out of Jeans equilibrium. Our results point towards promising ways of differentiating adiabatic from impulsive core formation.
Main text: 18 pages, 11 figures, appendices: 5 pages, 4 figures, accepted into MNRAS on February 9, 2019, contains new section on departures from spherical symmetry, write to [email protected] with questions
References in corpus (13)
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- Dwarf galaxies in CDM and SIDM with baryons: observational probes of the nature of dark matter
- Is there a "too big to fail" problem in the field?
- Supermassive Black Holes from Ultra-Strongly Self-Interacting Dark Matter
- The case for a cold dark matter cusp in Draco
- Observable tests of self-interacting dark matter in galaxy clusters: cosmological simulations with SIDM and baryons
- SIDM on FIRE: Hydrodynamical Self-Interacting Dark Matter simulations of low-mass dwarf galaxies
- No cores in dark matter-dominated dwarf galaxies with bursty star formation histories
- Universality of dark matter haloes shape over six decades in mass: Insights from the Millennium XXL and SBARBINE simulations
- The impact of cored density profiles on the observable quantities of dwarf spheroidal galaxies
- Diffusion and mixing in globular clusters
Cited by in corpus (17)
- The diverse dark matter density at sub-kiloparsec scales in Milky Way satellites:implications for the nature of dark matter
- Degeneracies Between Self-interacting Dark Matter and Supernova Feedback as cusp-core transformation mechanisms
- The orbital phase space of contracted dark matter halos
- Astrophysical Tests of Dark Matter Self-Interactions
- The cusp-core problem in gas-poor dwarf spheroidal galaxies
- The Response of Dark Matter Haloes to Gas Ejection: CuspCore II
- Gravothermal collapse of Self-Interacting Dark Matter halos as the Origin of Intermediate Mass Black Holes in Milky Way satellites
- Real and counterfeit cores: how feedback expands halos and disrupts tracers of inner gravitational potential in dwarf galaxies
- SN-driven mechanism of cusp-core transformation: an appraisal
- Constraints on dark matter self-interaction from galactic core size
- Kinematic signatures of impulsive supernova feedback in dwarf galaxies
- Anisotropic strong lensing as a probe of dark matter self-interactions
- Conservation of radial actions in time-dependent spherical potentials
- Measuring Resolved Star Formation Histories from High-Precision Color-Magnitude Diagrams with StarFormationHistories.jl
- Impulsive mixing of stellar populations in dwarf spheroidal galaxies
- Scalar Field Dark Matter: Impact of Supernovae-driven blowouts on the soliton structure of low mass dark matter halos
- Segue 2 Recently Collided with the Cetus-Palca Stream: New Opportunities to Constrain Dark Matter in an Ultra-Faint Dwarf