Structural properties of non-spherical dark halos in Milky Way and Andromeda dwarf spheroidal galaxies
arXiv:1507.07620 · doi:10.1088/0004-637X/810/1/22
Abstract
We investigate the non-spherical density structure of dark halos of the dwarf spheroidal (dSph) galaxies in the Milky Way and Andromeda galaxies based on revised axisymmetric mass models from our previous work. The models we adopt here fully take into account velocity anisotropy of tracer stars confined within a flattened dark halo. Applying our models to the available kinematic data of the 12 bright dSphs, we find that these galaxies associate with, in general, elongated dark halos, even considering the effect of this velocity anisotropy of stars. We also find that the best-fit parameters, especially for the shapes of dark halos and velocity anisotropy, are susceptible to both the availability of velocity data in the outer regions and the effect of the lack of sample stars in each spatial bin. Thus, to obtain more realistic limits on dark halo structures, we require photometric and kinematic data over much larger areas in the dSphs than previously explored. The results obtained from the currently available data suggest that the shapes of dark halos in the dSphs are more elongated than those of CDM subhalos. This mismatch needs to be solved by theory including baryon components and the associated feedback to dark halos as well as by further observational limits in larger areas of dSphs. It is also found that more diffuse dark halos may have undergone consecutive star formation history, thereby implying that dark-halo structure plays an important role in star formation activity.
Typos corrected. 16 pages, 12 figures. Accepted for publication by ApJ
References in corpus (27)
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- Measuring the inclination and mass-to-light ratio of axisymmetric galaxies via anisotropic Jeans models of stellar kinematics
- The Star Formation Histories of Local Group Dwarf Galaxies I. Hubble Space Telescope / Wide Field Planetary Camera 2 Observations
- The Observed properties of Dark Matter on small spatial scales
- Forged in FIRE: cusps, cores, and baryons in low-mass dwarf galaxies
- A mass-dependent density profile for dark matter haloes including the influence of galaxy formation
- Stellar Velocities in the Carina, Fornax, Sculptor and Sextans dSph Galaxies: Data from the Magellan/MMFS Survey
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- NGC 3741: dark halo profile from the most extended rotation curve
- GHASP : an H alpha kinematic survey of spiral and irregular galaxies. V. Dark matter distribution in 36 nearby spiral galaxies
- The Velocity Dispersion Profile of the Remote Dwarf Spheroidal Galaxy Leo I: A Tidal Hit and Run?
- The Shape of the Gravitational Potential in Cold Dark Matter Halos
- The shapes, orientation, and alignment of Galactic dark matter subhalos
- Clean Kinematic Samples in Dwarf Spheroidals: An Algorithm for Evaluating Membership and Estimating Distribution Parameters When Contamination is Present
- Stellar kinematics in the remote Leo II dwarf spheroidal galaxy -- Another brick in the wall
- Dark Matter Heating and Early Core Formation in Dwarf Galaxies
- The Star Formation Histories of Local Group Dwarf Galaxies III. Characterizing Quenching in Low-Mass Galaxies
- Early flattening of dark matter cusps in dwarf spheroidal galaxies
- Cores and Cusps in the Dwarf Spheroidals
- Complexity on Small Scales II: Metallicities and Ages in the Leo II Dwarf Spheroidal Galaxy
- Expanded haloes, abundance matching and too-big-to-fail in the Local Group
- The Cusp/Core problem: supernovae feedback versus the baryonic clumps and dynamical friction model
- Galactic Tides and the Shape and Orientation of Dwarf Galaxy Satellites
- Line-of-sight velocity dispersions and a mass distribution model of the Sa galaxy NGC 4594
- Re-examining the Too-Big-To-Fail Problem for Dark Matter Haloes with Central Density Cores
- A common surface-density scale for the Milky Way and Andromeda dwarf satellites as a constraint on dark matter models
Cited by in corpus (24)
- Diversity of dark matter density profiles in the Galactic dwarf spheroidal satellites
- Dark matter annihilation and decay from non-spherical dark halos in the Galactic dwarf satellites
- Dark Matter in Dwarf Spheroidal Galaxies and Indirect Detection: A Review
- A critical reassessment of particle Dark Matter limits from dwarf satellites
- DASH: a library of dynamical subhalo evolution
- Glueball scattering cross section in lattice SU(2) Yang-Mills theory
- The geometry and origin of ultra-diffuse ghost galaxies
- Impact of axisymmetric mass models for dwarf spheroidal galaxies on indirect dark matter searches
- Schwarzschild dynamical model of the Fornax dwarf spheroidal galaxy
- Three-dimensional structure of the Sagittarius dSph core from RR Lyrae
- The cusp-core problem in gas-poor dwarf spheroidal galaxies
- Dark halo structure in the Carina dwarf spheroidal galaxy: joint analysis of multiple stellar components
- The Isaac Newton Telescope monitoring survey of Local Group dwarf galaxies. II. The star formation history of Andromeda I derived from long period variables
- Axisymmetric Schwarzschild models of an isothermal axisymmetric mock dwarf spheroidal galaxy
- Universal dark halo scaling relation for the dwarf spheroidal satellites
- Evidence for a Dusty Dark Dwarf Galaxy in the Quadruple Lens MG0414+0534
- Evolution of dwarf spheroidal satellites in the common surface-density dark halos
- Coma Cluster Ultra-Diffuse Galaxies Are Not Standard Radio Galaxies
- On the problem of deformed spherical systems in Modified Newtonian Dynamics
- N-body self-consistent stars-halo modeling of the Fornax dwarf galaxy
- Quantifying Departures from Equilibrium with the Spherical Jeans Equation
- Distribution of Phantom Dark Matter in Dwarf Spheroidals
- Chemodynamics of BoötesI with : Revised Velocity Gradient, Dark Matter Density, and Galactic Chemical Evolution Constraints
- New model of density distribution for fermionic dark matter halos