The Role of Halo Substructure in Gamma-Ray Dark Matter Searches

An important, open research topic today is to understand the relevance that dark matter halo substructure may have for dark matter searches. In the standard cosmological model, halo substructure or subhalos are predicted to be largely abundant inside larger halos, for example, galaxies such as ours,...

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Bibliographic Details
Main Author: Sánchez-Conde, Miguel A. (auth)
Other Authors: Doro, Michele (auth)
Format: Electronic Book Chapter
Language:English
Published: MDPI - Multidisciplinary Digital Publishing Institute 2020
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DOAB: description of the publication
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245 1 0 |a The Role of Halo Substructure in Gamma-Ray Dark Matter Searches 
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520 |a An important, open research topic today is to understand the relevance that dark matter halo substructure may have for dark matter searches. In the standard cosmological model, halo substructure or subhalos are predicted to be largely abundant inside larger halos, for example, galaxies such as ours, and are thought to form first and later merge to form larger structures. Dwarf satellite galaxies-the most massive exponents of halo substructure in our own galaxy-are already known to be excellent targets for dark matter searches, and indeed, they are constantly scrutinized by current gamma-ray experiments in the search for dark matter signals. Lighter subhalos not massive enough to have a visible counterpart of stars and gas may be good targets as well, given their typical abundances and distances. In addition, the clumpy distribution of subhalos residing in larger halos may boost the dark matter signals considerably. In an era in which gamma-ray experiments possess, for the first time, the exciting potential to put to test the preferred dark matter particle theories, a profound knowledge of dark matter astrophysical targets and scenarios is mandatory should we aim for accurate predictions of dark matter-induced fluxes for investing significant telescope observing time on selected targets and for deriving robust conclusions from our dark matter search efforts. In this regard, a precise characterization of the statistical and structural properties of subhalos becomes critical. In this Special Issue, we aim to summarize where we stand today on our knowledge of the different aspects of the dark matter halo substructure; to identify what are the remaining big questions, and how we could address these; and, by doing so, to find new avenues for research. 
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546 |a English 
650 7 |a Astronomy, space & time  |2 bicssc 
653 |a gamma rays 
653 |a indirect searches. 
653 |a semi-analytic modeling 
653 |a cosmological model 
653 |a indirect dark matter searches 
653 |a particle dark matter 
653 |a indirect detection 
653 |a gamma-rays and neutrinos 
653 |a galactic subhalos 
653 |a indirect searches 
653 |a statistical data analysis 
653 |a subhalo boost 
653 |a dark matter halos 
653 |a halo substructure 
653 |a structure formation 
653 |a dark matter annihilation 
653 |a dark matter searches 
653 |a dwarf spheroidal satellite galaxies 
653 |a galactic sub-halos 
653 |a subhalos 
653 |a dwarf spheroidal galaxies 
653 |a gamma-rays 
653 |a cosmological N-body simulations 
653 |a dark matter 
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