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  4. Infalling ultra-faint dwarfs as emissaries of the Axiverse
 
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Infalling ultra-faint dwarfs as emissaries of the Axiverse

Journal
Astronomy & Astrophysics
Journal Volume
704
Start Page
A34
ISSN
0004-6361
1432-0746
Date Issued
2025-11-27
Author(s)
Pozo, A.
Broadhurst, T.
Luu, H. N.
Smoot, G.
Umetsu, K.
TZI-HONG CHIUEH  
HSI-YU SCHIVE  
Emami, R.
Hernquist, L.
Mocz, P.
Vogelsberger, M.
DOI
10.1051/0004-6361/202556196
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/735575
Abstract
Recent discoveries of ultra-faint dwarf galaxies (UFDs) infalling onto the Milky Way, namely Leo K & M at r ' 450 kpc, considerably strengthens the case that UFDs constitute a distinct galaxy class that is inherently smaller and fainter, and metal-poorer than the classical dwarf spheroidals (dSph). This distinction is at odds with the inherent continuity of galaxy halo masses formed under scale-free gravity for any standard dark-matter (DM) model. Here, we show that distinct galaxy classes do evolve in cosmological simulations of multiple light bosons representing the “Axiverse” proposal of string theory, where a discrete mass spectrum of axions is generically predicted to span many decades in mass. In this context, the observed UFD class we show corresponds to a relatively heavy boson of 3 × 10−21 eV, including Leo K & M, whereas a lighter axion of 10−22 eV comprises the bulk of DM in all larger galaxies including the dSphs. Although Leo M is larger in size than Leo K, we predict its velocity dispersion to be smaller ('1.7 km/s) than that of Leo K ('4.5 km/s) because of the inverse de Broglie scale dependence on momentum. This scenario can be definitively tested using millisecond pulsars close to the Galactic center, where the Compton frequencies of the heavy and light bosons imprint monotone timing residuals that may be detected by the Square Kilometre Array (SKA) on timescales of approximately one week and four months, respectively.
Subjects
dark matter
Publisher
EDP Sciences
Type
journal article

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