4.5 Article

SKA-Phase 1 sensitivity to synchrotron radio emission from multi-TeV Dark Matter candidates

Journal

PHYSICS OF THE DARK UNIVERSE
Volume 27, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.dark.2019.100448

Keywords

-

Funding

  1. Spanish MINECO [FIS2014-52837-P]
  2. AEI/FEDER, UE [FIS2016-78859-P]
  3. Spanish Ministry of Economy and Science [FPA2 014-53375-C2-1-P]
  4. CANTATA COST Action EU Framework Programme Horizon 2020 [CA15117]
  5. COST Action EU Framework Programme Horizon 2020 [CA16104]
  6. CSIC [I-LINK1019]
  7. Spanish Ministry of Economy and Science
  8. University of Cape Town Launching Grants Programme
  9. National Research Foundation [99077 2016-2018, CSUR150628121624, 110966, BS1705-09230233]
  10. NRF Incentive Funding for Rated Researchers [IFR170131220846]
  11. Juan de la Cierva-Formacion [FJCI-2016-29213]
  12. Spanish Agencia Estatal de Investigacion [FPA2015-65929-P]
  13. IFT Centro de Excelencia Severo Ochoa [SEV-2016-0597]
  14. INFN project QGSKY
  15. Agencia Estatal de Investigacion (AEI)
  16. H2020 CSA Twinning project [692194 ORBI-T-WINNINGO]
  17. Spanish Red Consolider MultiDark [FPA2017-90566-REDC]
  18. University of Cape Town Doctoral Fellowships
  19. National Astrophysics and Space Science Programme (NASSP)

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In the era of radio astronomy, the high sensitivity of the Square Kilometre Array (SKA) could play a decisive role in the detection of new radio sources. In this work, we study the SKA sensitivity to the synchrotron radio emission expected by the annihilation of TeV DM candidate in the Draco dwarf spheroidal galaxy. On the one hand, we consider model-independent DM candidates: we find out that with 1000 h of data-taking, SKA1-MID will be able to exclude up to 10 TeV thermal DM candidates that annihilate in W+W- and b (b) over bar channels. We also study as these constraints improve by including a density enhancement due to a DM-spike associated with an intermediate-mass black hole in Draco. On the other hand, we consider extra-dimensional brane-world DM candidates, dubbed branons. In this specific scenario, SKA allows us to set constraints on the branon parameter space (f, M), where f is related to the coupling of the branon to the Standard Model particles and M is the mass of the branon itself. In particular, we consider two different branon DM candidates. We find out that SKA will be able to set more stringent constraints on the branon DM candidate required in order to fit the AMS-02 data, yet the sensitivity of the instrument should be improved in order to study the branon candidate for the Galactic Centre. Nonetheless, we show that SKA represents - among other detectors - the most promising instrument for multi-wavelength detection of synchrotron radio emission by annihilating multi-TeV DM. (C) 2019 Elsevier B.V. All rights reserved.

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