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The "Dark-Matter Dominated" Galaxy Segue 1 Modeled with a Black Hole and no Dark Halo

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arxiv 2505.06198 v2 pith:4PSFG6FH submitted 2025-05-09 astro-ph.GA

classification astro-ph.GA
keywords blackholeseguedarkmasshalomodelsstars
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abstract

The dwarf spheroidal galaxy, Segue 1, is thought to have one of the largest ratios of dark matter to stellar mass. Using orbit-based dynamical models, we model Segue 1, including a dark halo and a central black hole. The best-fit model requires a black hole mass of $4 \pm 1.5 \times 10^5\ M_\odot$. The value of the black hole mass is the same with or without a dark halo. The mass-to-light ratio of the stars is poorly constrained by the dynamical modeling, reflecting that Segue 1 is dominated by mass other than stars. Dynamical models that exclude a black hole provide a worse fit and require a dark halo with very small scale radii of around 100 parsecs. Additionally, the zero black hole models require a stellar orbital distribution that is highly radially biased. The model with a black hole provides an orbital structure that is close to isotropic, more similar to other well-studied systems. We argue that the two-parameter models of stars and black hole provide a better description of Segue 1 than the three-parameter models of stars and two dark halo components. Additional support for a central black hole comes from a significant increase in the central rotation. Using individual velocities, we measure a rotation amplitude of $9.0 \pm 2.4\ \mathrm{km\ s^{-1}}$. Segue 1 is likely being tidally stripped at large radii, and we might be witnessing the remnant nucleus of a more massive system. Alternatively, given the high black hole mass relative to the stellar mass, Segue 1 is analogous to Little Red Dots seen in the early Universe.

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Cited by 2 Pith papers

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

  1. The dark fate of ultra-faint dwarfs: Gravothermal collapse in action

    astro-ph.CO 2026-03 conditional novelty 6.0 of 10

    Using high-resolution SIDM N-body simulations with tidal stripping, the authors find that the diverse dark-matter densities of Milky Way ultra-faint dwarfs can be explained if most are in the gravothermal collapse pha...

  2. A JWST View of the Overmassive Black Hole in NGC 4486B

    astro-ph.GA 2025-05 conditional novelty 5.0 of 10

    JWST stellar dynamical modeling of the compact elliptical NGC 4486B yields MBH = 3.6+0.7-0.7 x 10^8 solar masses, and MBH/M* of roughly 4-13%, confirming an overmassive black hole.

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