We present a new empirical relation between galaxy dark matter halo mass (Mhalo) and the velocity along the flat portion of the rotation curve (Vflat), derived from 120 late-type galaxies from the SPARC data base. The orthogonal scatter in this relation is comparable to the observed scatter in the baryonic Tully–Fisher relation (BTFR), indicating a tight coupling between total halo mass and galaxy kinematics at r ≪ Rvir. The small vertical scatter in the relation makes it an extremely competitive estimator of total halo mass. We demonstrate that this conclusion holds true for different priors on M*/L[3.6μ] that give a tight BTFR, but requires that the halo density profile follow DC14 rather than NFW. We provide additional relations between ...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
We use the mass discrepancy–acceleration relation (the correlation between the ratio of total-to-vis...
We derive new constraints on the mass of the Milky Way's dark matter halo, based on 2401 rigorously ...
We present a new empirical relation between galaxy dark matter halo mass (Mhalo) and the velocity al...
The mass–velocity–size relation of late-type galaxies decouples into independent correlations betwee...
The mass–velocity–size relation of late-type galaxies decouples into independent correlations betwee...
ABSTRACT We examine the amplitude of the rotation velocity that can be attributed to the dark matter...
Dark matter–baryon scaling relations in galaxies are important in order to constrain galaxy formatio...
Dark matter–baryon scaling relations in galaxies are important in order to constrain galaxy formatio...
International audienceDark matter-baryon scaling relations in galaxies are important in order to con...
It has long been regarded as difficult if not impossible for a cosmological model to account simulta...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
We use the mass discrepancy–acceleration relation (the correlation between the ratio of total-to-vis...
We derive new constraints on the mass of the Milky Way's dark matter halo, based on 2401 rigorously ...
We present a new empirical relation between galaxy dark matter halo mass (Mhalo) and the velocity al...
The mass–velocity–size relation of late-type galaxies decouples into independent correlations betwee...
The mass–velocity–size relation of late-type galaxies decouples into independent correlations betwee...
ABSTRACT We examine the amplitude of the rotation velocity that can be attributed to the dark matter...
Dark matter–baryon scaling relations in galaxies are important in order to constrain galaxy formatio...
Dark matter–baryon scaling relations in galaxies are important in order to constrain galaxy formatio...
International audienceDark matter-baryon scaling relations in galaxies are important in order to con...
It has long been regarded as difficult if not impossible for a cosmological model to account simulta...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
Context. The baryonic Tully-Fisher relation (BTF) is a fundamental relation between baryonic mass an...
We use the mass discrepancy–acceleration relation (the correlation between the ratio of total-to-vis...
We derive new constraints on the mass of the Milky Way's dark matter halo, based on 2401 rigorously ...