EROSE: An algorithm searching for resolved Local Group satellites. The impact of combining different photometric bands on the detectability of Milky Way satellites in the LSST
Samuel Rusterucci, Nicolas F. Martin, Else Starkenburg
Abstract
Systematic searches for ultra-faint Milky Way satellite galaxies typically combine local density estimators with colour-magnitude cuts, which are usually performed in 2D and have rarely, if ever, been extended to higher-dimensional spaces. These studies generally rely on gri photometry, overlooking the shallower but metal-sensitive u band. Entering the era of LSST, our study explores different ugri combinations to determine which provides the best performance. We injected 36,000 dwarf galaxies into the simulated data from the LSST Data Challenge 2 (DC2) and attempted to recover them using EROSE, a new fast multi-band search algorithm designed to be easily applied to any survey and combination of photometric bands. We find that a multi-colour-magnitude space combining all three gri photometric bands slightly outperforms, on average, the more commonly used colour-magnitude spaces combining only gr or ri. The highest recovery fraction is achieved using a colour-magnitude space combining the u and g bands, recovering, on average, 64.1+6.3-6.0\% of the injected satellites. This improvement is particularly evident for the most extended systems, for which the additional colour information provided by the u band improves our ability to isolate metal-poor member stars from contaminating foreground populations. We estimate that the LSST will discover 50 new Milky Way dwarf galaxies, more than doubling the currently known number of satellites within its footprint. Combining the LSST photometric bands with a space-based star/galaxy separation could further improve these results, enabling the discovery of satellites at the low-mass end of the Milky Way's satellite galaxy luminosity function and providing valuable constraints on dark matter models.
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