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Dynamical Mass Determinations and Scaling Relations of Early-Type Galaxies

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arxiv 1410.7329 v1 pith:65LE7W6S submitted 2014-10-27 astro-ph.GA

classification astro-ph.GA
keywords massdynamicalrelationsscalingstellarbulgedeterminationsearly-type
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abstract

I review our understanding of classic dynamical scaling relations, relating luminosity, size and kinematics of early-type galaxies. Using unbiased determinations of galaxy mass profiles from stellar dynamical models, a simple picture has emerged in which scaling relations are driven by virial equilibrium, accompanied by a trend in the stellar mass-to-light ratio (M/L). This picture confirms the earliest insights. The trend is mainly due to the combined variation of age, metallicity and the stellar initial mass function (IMF). The systematic variations best correlate with the galaxy velocity dispersion, which traces the bulge mass fraction. This indicates a link between bulge growth and quenching of star formation. Dark matter is unimportant within the half-light radius, where the total mass profile is close to isothermal ($\rho\propto r^{-2}$).

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. 2D Surface Brightness Modelling of Large 2MASS Galaxies II: The Role of Classical Bulges and Pseudobulges on Galaxy Scaling Relations and its implication for Supermassive Black Hole Formation

    astro-ph.GA 2025-02 conditional novelty 5.0 of 10

    Classical bulges and pseudobulges follow different galaxy scaling relations, and pseudobulges do not follow the black hole scaling relations defined by classical bulges and ellipticals, based on 119 nearby galaxies.

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