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Axisymmetric Dynamical Models of the Central Regions of Galaxies

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arxiv astro-ph/0209483 v2 pith:VEBO5KXP submitted 2002-09-23 astro-ph

Axisymmetric Dynamical Models of the Central Regions of Galaxies

classification astro-ph
keywords modelsgalaxiesdatagalaxyground-basedmassmeasureaxisymmetric
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We present axisymmetric, orbit superposition models for 12 galaxies using data taken with the Hubble Space Telescope (HST) and ground-based observatories. In each galaxy, we detect a central black hole (BH) and measure its mass to accuracies ranging from 10% to 70%. We demonstrate that in most cases the BH detection requires both the HST and ground-based data. Using the ground-based data alone does provide an unbiased measure of the BH mass (provided they are fit with fully general models), but at a greatly reduced significance. The most significant correlation with host galaxy properties is the relation between the BH mass and the velocity dispersion of the host galaxy; we find no other equally strong correlation, and no second parameter that improves the quality of the mass-dispersion relation. We are also able to measure the stellar orbital properties from these general models. The most massive galaxies are strongly biased to tangential orbits near the BH, consistent with binary BH models, while lower-mass galaxies have a range of anisotropies, consistent with an adiabatic growth of the BH.

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Cited by 2 Pith papers

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  1. SchwarMAX: a GPU-friendly Schwarzschild orbit-superposition modelling framework

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    SchwarMAX delivers a fast GPU-native Schwarzschild modeling code that recovers density profiles and bar pattern speed from mock IFU data of a simulated barred galaxy.

  2. The Impact of Non-Gaussian Line Spread Functions on Stellar Kinematic Recovery: Consequences for Dynamical Models

    astro-ph.GA 2026-06 unverdicted novelty 5.0

    Non-Gaussian LSF shapes bias kinematic extraction from spectra; matching the LSF of templates to the target reduces dispersion bias below 1%.