The low-mass end of the baryonic Tully-Fisher relation
arXiv:1602.02155 · doi:10.1093/mnras/stw2461
Abstract
The scaling of disk galaxy rotation velocity with baryonic mass (the "Baryonic Tully-Fisher" relation, BTF) has long confounded galaxy formation models. It is steeper than the M ~ V^3 scaling relating halo virial masses and circular velocities and its zero point implies that galaxies comprise a very small fraction of available baryons. Such low galaxy formation efficiencies may in principle be explained by winds driven by evolving stars, but the tightness of the BTF relation argues against the substantial scatter expected from such vigorous feedback mechanism. We use the APOSTLE/EAGLE simulations to show that the BTF relation is well reproduced in LCDM simulations that match the size and number of galaxies as a function of stellar mass. In such models, galaxy rotation velocities are proportional to halo virial velocity and the steep velocity-mass dependence results from the decline in galaxy formation efficiency with decreasing halo mass needed to reconcile the CDM halo mass function with the galaxy luminosity function. Despite the strong feedback, the scatter in the simulated BTF is smaller than observed, even when considering all simulated galaxies and not just rotationally-supported ones. The simulations predict that the BTF should become increasingly steep at the faint end, although the velocity scatter at fixed mass should remain small. Observed galaxies with rotation speeds below ~40 km/s seem to deviate from this prediction. We discuss observational biases and modeling uncertainties that may help to explain this disagreement in the context of LCDM models of dwarf galaxy formation.
10 pages, 7 figures, submitted to MNRAS
References in corpus (21)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- Baryon effects on the internal structure of LCDM halos in the EAGLE simulations
- The small scatter of the baryonic Tully-Fisher relation
- The Baryon Content of Extremely Low Mass Dwarf Galaxies
- 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?
- The Impact of Feedback on Disk Galaxy Scaling Relations
- A First Attempt to Calibrate the Baryonic Tully-Fisher Relation with Gas Dominated Galaxies
- Dwarf Galaxy Dark Matter Density Profiles Inferred from Stellar and Gas Kinematics
- The effect of baryons on the inner density profiles of rich clusters
- Baryonic Tully-Fisher Relation for Extremely Low Mass Galaxies
- Missing dark matter in dwarf galaxies?
- ALFALFA Discovery of the Nearby Gas-rich Dwarf Galaxy Leo P. V. Neutral Gas Dynamics and Kinematics
- Rotation rates, sizes, and star formation efficiencies of a representative population of simulated disc galaxies
- The different baryonic Tully-Fisher relations at low masses
Cited by in corpus (62)
- Dark Matter Self-interactions and Small Scale Structure
- Challenges for CDM: An update
- Small scale problems of the CDM model: a short review
- FIRE in the Field: Simulating the Threshold of Galaxy Formation
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- The baryonic Tully-Fisher relation for different velocity definitions and implications for galaxy angular momentum
- Gravitational probes of dark matter physics
- Spreading out and staying sharp - Creating diverse rotation curves via baryonic and self-interaction effects
- Off the baryonic Tully-Fisher relation: a population of baryon-dominated ultra-diffuse galaxies
- Non-circular motions and the diversity of dwarf galaxy rotation curves
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- Reconciling the Diversity and Uniformity of Galactic Rotation Curves with Self-Interacting Dark Matter
- Baryonic clues to the puzzling diversity of dwarf galaxy rotation curves
- From light to baryonic mass: the effect of the stellar mass-to-light ratio on the Baryonic Tully-Fisher relation
- What Causes The Formation of Disks and End of Bursty Star Formation?
- Snap, Crackle, Pop: sub-grid supernova feedback in AMR simulations of disk galaxies
- NIHAO XIV: Reproducing the observed diversity of dwarf galaxy rotation curve shapes in LCDM
- Dwarf Galaxies in CDM, WDM, and SIDM: Disentangling Baryons and Dark Matter Physics
- Hints against the cold and collisionless nature of dark matter from the galaxy velocity function
- Hints for a gravitational constant transition in Tully-Fisher data
- Structure and kinematics of tidally limited satellite galaxies in LCDM
- The cold dark matter content of Galactic dwarf spheroidals: no cores, no failures, no problem
- The new semianalytic code GalICS 2.0 - Reproducing the galaxy stellar mass function and the Tully-Fisher relation simultaneously
- Magellanic satellites in CDM cosmological hydrodynamical simulations of the Local Group
- A new astrophysical solution to the Too Big To Fail problem - Insights from the MoRIA simulations
- Constraints on the dynamical evolution of the galaxy group M81
- The radial acceleration relation in a CDM universe
- The HI Velocity Function: a test of cosmology or baryon physics?
- The baryonic Tully-Fisher relation in the Simba simulation
- The many reasons that the rotation curves of low-mass galaxies can fail as tracers of their matter distributions
- The missing dwarf galaxies of the Local Group
- The Turn-Down of the Baryonic Tully-Fisher Relation and Changing Baryon Fractions at Low Galaxy Masses
- The SAMI Galaxy Survey: The Low-Redshift Stellar Mass Tully-Fisher Relation
- Scaling relations and baryonic cycling in local star-forming galaxies. III. Outflows, effective yields and metal loading factors
- ZOMG III: The effect of Halo Assembly on the Satellite Population
- SHDE: Survey description and mass-kinematics scaling relations for dwarf galaxies
- Another baryon miracle? Testing solutions to the "missing dwarfs" problem
- Galaxy rotation curves and universal scaling relations: comparison between phenomenological and fermionic dark matter profiles
- The redshift evolution of the baryonic Tully-Fisher relation in Simba
- A Comparison of the Baryonic Tully-Fisher Relation in MaNGA and IllustrisTNG
- Dynamical friction in Bose-Einstein condensed self-interacting dark matter at finite temperatures, and the Fornax dwarf spheroidal
- Global dynamic scaling relations of HI-rich ultra-diffuse galaxies
- The Origin of Lopsided Satellite Galaxy Distribution in Galaxy Pairs
- The radial acceleration relation is a natural consequence of the baryonic Tully-Fisher relation
- Simplified galaxy formation with mesh-less hydrodynamics
- Angular momentum evolution of bulge stars in disc galaxies in NIHAO
- The Hot Gas Exhaust of Starburst Engines in Mergers: Testing Models of Stellar Feedback and Star Formation Regulation
- The Challenge to MOND from ultra faint dwarf galaxies
- Comparing rotation curve observations to hydrodynamic ΛCDM simulations of galaxies
- Photometry and kinematics of dwarf galaxies from the Apertif HI survey
- Predictions for Detecting a Turndown in the Baryonic Tully Fisher Relation
- Constraining cosmology with the velocity function of low-mass galaxies
- Dark Matter phenomenology : from simplified WIMP models to refined alternative solutions
- Fingerprint matching of beyond-WIMP dark matter: neural network approach
- Collapse of spherical overdensities in superfluid models of dark matter
- The multi-wavelength Tully-Fisher relation in the TNG50 cosmological simulation
- The isolated elliptical galaxy NGC 5812 -- MOND or Dark Matter?
- Accretion of Galaxies around Supermassive Black Holes and a Theoretical Model of the Tully-Fisher and M-Sigma Relations
- The APOSTLE simulations: Rotation curves derived from synthetic 21-cm observations
- "Observations" of simulated dwarf galaxies: Star-formation histories from color-magnitude diagrams
- Gas of thin tubes of massless scalar field as a possible model of unified dark fluid
- Recent Developments on the HI Gas of Low-Redshift Galaxies Seen by the 21cm Emission Lines