The dark matter halo shape of edge-on disk galaxies
J. C. O'Brien, K. C. Freeman, P. C. van der Kruit
Abstract
Open-access reader
J. C. O'Brien, K. C. Freeman, P. C. van der Kruit
Abstract
Open-access reader
This is the second paper of a series in which we attempt to put constraints on the flattening of dark halos in disk galaxies. For this purpose, we observe the Hi in edge-on galaxies, where it is in principle possible to measure the force field in the halo vertically and radially from gas layer flaring and rotation curve decomposition respectively. To calculate the force fields, we need to analyse the observed XV diagrams to accurately measure all three functions that describe the planar kinematics and distribution of a galaxy: the radial Hi surface density, the rotation curve and the Hi velocity dispersion. In this paper, we discuss the improvements and limitations of the methods previously used to measure these Hi properties. We extend the constant velocity dispersion method to include determination of the Hi velocity dispersion as a function of galactocentric radius and perform extensive tests on the quality of the fits. We will apply this “radial decomposition XV modelling method” to our Hi observations of 8 Hi rich, late-type, edge-on galaxies in the third paper of this series.
OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
This is the second paper of a series in which we attempt to put constraints on the flattening of dark halos in disk galaxies. For this purpose, we observe the Hi in edge-on galaxies, where it is in principle possible to measure the force field in the halo vertically and radially from gas layer flaring and rotation curve decomposition respectively. To calculate the force fields, we need to analyse the observed XV diagrams to accurately measure all three functions that describe the planar kinematics and distribution of a galaxy: the radial Hi surface density, the rotation curve and the Hi velocity dispersion. In this paper, we discuss the improvements and limitations of the methods previously used to measure these Hi properties. We extend the constant velocity dispersion method to include determination of the Hi velocity dispersion as a function of galactocentric radius and perform extensive tests on the quality of the fits. We will apply this “radial decomposition XV modelling method” to our Hi observations of 8 Hi rich, late-type, edge-on galaxies in the third paper of this series.
Key concepts: Galaxy rotation curve, Astrophysics, Physics, Velocity dispersion, Flattening, Galaxy, Dark matter, Halo