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A comment on "Why is the Galactic disk so cool?", by Hamilton et al

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arxiv 2501.17907 v1 pith:V5QJZ2XW submitted 2025-01-29 astro-ph.GA

classification astro-ph.GA
keywords heatingdiskfrankelrategalactichamiltonmigrationmilky
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Frankel et al (2020) reported that the rate of diffusion in angular momentum by stars in the disk of the Milky Way was about ten times faster than the rate of heating, which places a stringent requirement on the nature of disk star scattering. In a recent posting, Hamilton et al (2024) integrated orbits of test particles in a Galactic model that included transient spirals, and found that the ratio of the rates heating to radial migration in their calculations was generally larger than reported by Frankel et al. They concluded that the observed slow heating rate poses a significant challenge to dynamical models of the Milky Way and seemed to require revision of our current theories of spiral structure. Here we show that that our earlier models of radial migration we published in 2002, after correction for 3D motion, account naturally for the finding of Frankel et al, but leave little room for additional heating by mechanisms other than transient spirals.

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  1. Observational Constraints of Radial Migration in the Galactic Disc Driven by the Slowing Bar

    astro-ph.GA 2025-02 conditional novelty 6.0 of 10

    The slowing Galactic bar's corotation resonance can explain the double age-metallicity sequence near the Sun and implies the bar formed with pattern speed 60-100 km/s/kpc and began slowing 6-8 Gyr ago.

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