An assessment of the "too big to fail" problem for field dwarf galaxies in view of baryonic feedback effects
arXiv:1511.08741 · doi:10.1051/0004-6361/201527854
Abstract
Recent studies have established that extreme dwarf galaxies --whether satellites or field objects-- suffer from the so called "too big to fail" (TBTF) problem. Put simply, the TBTF problem consists of the fact that it is difficult to explain both the measured kinematics of dwarfs and their observed number density within the LCDM framework. The most popular proposed solutions to the problem involve baryonic feedback processes. For example, reionization and baryon depletion can decrease the abundance of halos that are expected to host dwarf galaxies. Moreover, feedback related to star formation can alter the dark matter density profile in the central regions of low-mass halos. In this article we assess the TBTF problem for field dwarfs, taking explicitly into account the baryonic effects mentioned above. We find that 1) reionization feedback cannot resolve the TBTF problem on its own, because the halos in question are too massive to be affected by it, and that 2) the degree to which profile modification can be invoked as a solution to the TBTF problem depends on the radius at which galactic kinematics are measured. Based on a literature sample of about 90 dwarfs with interferometric observations in the 21cm line of atomic hydrogen (HI), we conclude that the TBTF problem persists despite baryonic effects. However, the preceding statement assumes that the sample under consideration is representative of the general population of field dwarfs. In addition, the unexplained excess of dwarf galaxies in LCDM could be as small as a factor of ~ 1.8, given the current uncertainties in the measurement of the galactic velocity function. Both of these caveats highlight the importance of upcoming uniform surveys with HI interferometers for advancing our understanding of the issue.
v2 matches version accepted by A&A. About 9 pages, 5 figures (+ appendices)
References in corpus (24)
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- Massloss of galaxies due to a UV-background
- Updated Nearby Galaxy Catalog
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- Stellar Feedback in Dwarf Galaxy Formation
- A mass-dependent density profile for dark matter haloes including the influence of galaxy formation
- Search for TeV Gamma-ray Emission from GRB 100621A, an extremely bright GRB in X-rays, with H.E.S.S
- Too Big to Fail in the Local Group
- FIGGS: Faint Irregular Galaxies GMRT Survey - Overview, observations and first results
- Is there a "too big to fail" problem in the field?
- The rotation curves shapes of late-type dwarf galaxies
- Bent by baryons: the low mass galaxy-halo relation
- The abundance of (not just) dark matter haloes
- Dark Matter Heating and Early Core Formation in Dwarf Galaxies
- M31 Satellite Masses Compared to LCDM Subhaloes
- Baryonic Tully-Fisher Relation for Extremely Low Mass Galaxies
- Expanded haloes, abundance matching and too-big-to-fail in the Local Group
- On the persistence of two small-scale problems in ΛCDM
- ALFALFA Discovery of the Nearby Gas-rich Dwarf Galaxy Leo P. V. Neutral Gas Dynamics and Kinematics
- APERTIF, a focal plane array for the WSRT
- Characterizing the Star Formation of the Low-Mass SHIELD Galaxies from Hubble Space Telescope Imaging
- Re-examining the Too-Big-To-Fail Problem for Dark Matter Haloes with Central Density Cores
- The low mass end of the neutral gas mass and velocity width functions of galaxies in CDM
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- The Local Group on FIRE: Dwarf galaxy populations across a suite of hydrodynamic simulations
- Gravitational probes of dark matter physics
- Spreading out and staying sharp - Creating diverse rotation curves via baryonic and self-interaction effects
- Organized Chaos: Scatter in the relation between stellar mass and halo mass in small galaxies
- Ultra-Light Dark Matter in Ultra-Faint Dwarf Galaxies
- MIGHTEE-HI: The HI emission project of the MeerKAT MIGHTEE survey
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- Hidden Sector Hydrogen as Dark Matter: Small-scale Structure Formation Predictions and the Importance of Hyperfine Interactions
- Missing dark matter in dwarf galaxies?
- Scalar Field Dark Matter: Helping or Hurting Small-Scale Problems in Cosmology?
- Dwarf Galaxies in CDM, WDM, and SIDM: Disentangling Baryons and Dark Matter Physics
- The Milky Way's Halo and Subhalos in Self-Interacting Dark Matter
- How to Reconcile the Observed Velocity Function of Galaxies with Theory
- Hints against the cold and collisionless nature of dark matter from the galaxy velocity function
- Strong Dark Matter Self-interactions Diversify Halo Populations within and surrounding the Milky Way
- MIGHTEE-HI: The baryonic Tully-Fisher relation over the last billion years
- Stellar streams as gravitational experiments I. The case of Sagittarius
- Dark matter in galaxies
- Fuzzy Dark Matter at Cosmic Dawn: New 21-cm Constraints
- Revisiting the bulge-halo conspiracy I: Dependence on galaxy properties and halo mass
- Gas dynamics in dwarf galaxies as testbeds for dark matter and galaxy evolution
- Gravitino or Axino Dark Matter with Reheat Temperature as high as GeV
- A new astrophysical solution to the Too Big To Fail problem - Insights from the MoRIA simulations
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- Photometry and kinematics of dwarf galaxies from the Apertif HI survey
- When quantum corrections alter the predictions of classical field theory for scalar field dark matter
- Predictions for Detecting a Turndown in the Baryonic Tully Fisher Relation
- Constraining cosmology with the velocity function of low-mass galaxies
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- Dark matter haloes in the multicomponent model. III. From dwarfs to galaxy clusters
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