The different baryonic Tully-Fisher relations at low masses
arXiv:1603.06595 · doi:10.1093/mnras/stw650
Abstract
We compare the Baryonic Tully-Fisher relation (BTFR) of simulations and observations of galaxies ranging from dwarfs to spirals, using various measures of rotational velocity Vrot. We explore the BTFR when measuring Vrot at the flat part of the rotation curve, Vflat, at the extent of HI gas, Vlast, and using 20% (W20) and 50% (W50) of the width of HI line profiles. We also compare with the maximum circular velocity of the parent halo, Vmax, within dark matter only simulations. The different BTFRs increasingly diverge as galaxy mass decreases. Using Vlast one obtains a power law over four orders of magnitude in baryonic mass, with slope similar to the observed BTFR. Measuring Vflat gives similar results as Vlast when galaxies with rising rotation curves are excluded. However, higher rotation velocities would be found for low mass galaxies if the cold gas extended far enough for Vrot to reach a maximum. W20 gives a similar slope as Vlast but with slightly lower values of Vrot for low mass galaxies, although this may depend on the extent of the gas in your galaxy sample. W50 bends away from these other relations toward low velocities at low masses. By contrast, Vmax bends toward high velocities for low mass galaxies, as cold gas does not extend out to the radius at which halos reach Vmax. Our study highlights the need for careful comparisons between observations and models: one needs to be consistent about the particular method of measuring Vrot, and precise about the radius at which velocities are measured.
Accepted for publication MNRAS
References in corpus (19)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Astrophysics Source Code Library
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Updated Nearby Galaxy Catalog
- The ACS Nearby Galaxy Survey Treasury IX. Constraining asymptotic giant branch evolution with old metal-poor galaxies
- A mass-dependent density profile for dark matter haloes including the influence of galaxy formation
- The small scatter of the baryonic Tully-Fisher relation
- The Baryon Content of Extremely Low Mass Dwarf Galaxies
- FIGGS: Faint Irregular Galaxies GMRT Survey - Overview, observations and first results
- The rotation curves shapes of late-type dwarf galaxies
- The velocity function in the local environment from LCDM and LWDM constrained simulations
- High Resolution Optical Velocity Fields of 11 Low Surface Brightness Galaxies
- The Impact of Feedback on Disk Galaxy Scaling Relations
- Weighing Galaxy Disks with the Baryonic Tully-Fisher Relation
- A First Attempt to Calibrate the Baryonic Tully-Fisher Relation with Gas Dominated Galaxies
- The mass discrepancy acceleration relation in a CDM context
- The high mass end of the Tully-Fisher relation
- The Radial Tully-Fisher relation for spiral galaxies I
- LambdaCDM Halo Density Profiles: where do actual halos converge to NFW ones?
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- From light to baryonic mass: the effect of the stellar mass-to-light ratio on the Baryonic Tully-Fisher relation
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- NIHAO XIV: Reproducing the observed diversity of dwarf galaxy rotation curve shapes in LCDM
- How to Reconcile the Observed Velocity Function of Galaxies with Theory
- A Slippery Slope: Systematic Uncertainties in the Line Width Baryonic Tully-Fisher Relation
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- SAMI-HI: The HI view of the H Tully-Fisher relation and data release
- Probing galaxy evolution through HI 21-cm emission and absorption: current status and prospects with the Square Kilometre Array
- A Generalist, Automated ALFALFA Baryonic Tully-Fisher Relation
- Predictions for Detecting a Turndown in the Baryonic Tully Fisher Relation
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- Understanding Galaxy Rotation Curves with Verlinde's Emergent Gravity