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Self-consistent massive disks in triaxial dark matter halos

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posted on 2024-07-12, 12:55 authored by Jeremy Bailin, Joshua D. Simon, Alberto D. Bolatto, Brad K. Gibson, Chris Power
Galactic disks in triaxial dark matter halos become deformed by the elliptical potential in the plane of the disk in such a way as to counteract the halo ellipticity. We develop a technique to calculate the equilibrium configuration of such a disk in the combined disk-halo potential, which is based on the method of Jog but accounts for the radial variation in both the halo potential and the disk ellipticity. This crucial ingredient results in qualitatively different behavior of the disk: the disk circularizes the potential at small radii, even for a reasonably low disk mass. This effect has important implications for proposals to reconcile cuspy halo density profiles with low surface brightness galaxy rotation curves using halo triaxiality. The disk ellipticities in our models are consistent with observational estimates based on two-dimensional velocity fields and isophotal axis ratios.

Funding

The Commonwealth Cosmology Initiative: From the First Objects to the Cosmic Web

Australian Research Council

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ISSN

0004-637X

Journal title

Astrophysical Journal

Volume

667

Issue

1

Pagination

10 pp

Publisher

University of Chicago Press

Copyright statement

Copyright © 2007 The American Astronomical Society. is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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