New axes for the stellar mass fundamental plane
Paul L. Schechter
Abstract
Open-access reader
Paul L. Schechter
Abstract
Open-access reader
Abstract We argue that the stellar velocity dispersion observed in an elliptical galaxy is a good proxy for the halo velocity dispersion. As dark matter halos are almost completely characterized by a single scale parameter, the stellar velocity dispersion tells us the virial radius of the halo and the mass contained within. This permits non-dimensionalizing of the stellar mass and effective radius axes of the stellar mass fundamental plane by the virial radius and halo mass, respectively.
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Abstract We argue that the stellar velocity dispersion observed in an elliptical galaxy is a good proxy for the halo velocity dispersion. As dark matter halos are almost completely characterized by a single scale parameter, the stellar velocity dispersion tells us the virial radius of the halo and the mass contained within. This permits non-dimensionalizing of the stellar mass and effective radius axes of the stellar mass fundamental plane by the virial radius and halo mass, respectively.
Key concepts: Virial mass, Fundamental plane (elliptical galaxies), Velocity dispersion, Halo, Physics, Astrophysics, RADIUS, Dark matter halo