Toward the ultimate reach of current imaging atmospheric Cherenkov telescopes and their sensitivity to TeV dark matter
arXiv:2210.03140 · doi:10.1103/PhysRevD.107.043028
Abstract
Indirect detection opens a unique window for probing thermal dark matter (DM): the same annihilation process that determined the relic abundance in the early Universe drives the present day astrophysical signal. While TeV-scale particles weakly coupled to the Standard Model face undoubted challenges from decades of null searches, the scenario remains compelling, and simple realizations such as Higgsino DM remain largely unexplored. The fate of such scenarios could be determined by gamma-ray observations of the centre of the Milky Way with Imaging Atmospheric Cherenkov Telescopes (IACTs). We consider the ultimate sensitivity of current IACTs to a broad range of TeV-scale DM candidates - including specific ones such as the Wino, Higgsino, and Quintuplet. To do so, we use realistic mock H.E.S.S.-like observations of the inner Milky Way halo, and provide a careful assessment of the impact of recent Milky Way mass modeling, instrumental and astrophysical background uncertainties in the Galactic Center region, and the theoretical uncertainty on the predicted signal. We find that the dominant systematic for IACT searches in the inner Galaxy is the unknown distribution of DM in that region, however, beyond this the searches are currently statistically dominated indicating a continued benefit from more observations. For two-body final states at , we find a H.E.S.S.-like observatory is sensitive to , except for neutrino final states, although we find results competitive with ANTARES. In addition, the thermal masses for the Wino and Quintuplet can be probed; the Higgsino continues to be out of reach by at least a factor of a few. Our conclusions are also directly relevant to the next generation Cherenkov Telescope Array, which remains well positioned to be the discovery instrument for thermal DM.
23 pages, 13 figures, 3 tables, including appendix. Accepted in Phys. Rev. D
References in corpus (50)
- PYTHIA 6.4 Physics and Manual
- An Introduction to PYTHIA 8.2
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- Precise Relic WIMP Abundance and its Impact on Searches for Dark Matter Annihilation
- Cosmology and Astrophysics of Minimal Dark Matter
- Non-perturbative Effect on Thermal Relic Abundance of Dark Matter
- Dynamical modelling of the Galactic bulge and bar: the Milky Way's bar pattern speed, stellar, and dark matter mass distribution
- Weak Corrections are Relevant for Dark Matter Indirect Detection
- Search for dark matter annihilations towards the inner Galactic halo from 10 years of observations with H.E.S.S
- Review of LHC Dark Matter Searches
- A blueprint for detecting supersymmetric dark matter in the Galactic halo
- Minimal Dark Matter predictions for galactic positrons, anti-protons, photons
- Evidence for dark matter in the inner Milky Way
- Dark Matter Spectra from the Electroweak to the Planck Scale
- Sensitivity of the Cherenkov Telescope Array to a dark matter signal from the Galactic centre
- Relic densities including Sommerfeld enhancements in the MSSM
- Constraining Very Heavy Dark Matter Using Diffuse Backgrounds of Neutrinos and Cascaded Gamma Rays
- Dark Matter Signals from Cascade Annihilations
- Search for dark matter annihilation signals in the H.E.S.S. Inner Galaxy Survey
- Multi-Step Cascade Annihilations of Dark Matter and the Galactic Center Excess
- Heavy Dark Matter Annihilation from Effective Field Theory
- Prospects for Heavy WIMP Dark Matter with CTA: the Wino and Higgsino
- Prospects for Annihilating Dark Matter in the inner Galactic halo by the Cherenkov Telescope Array
- Baryonic and dark matter distribution in cosmological simulations of spiral galaxies
- Soft Collinear Effective Theory for Heavy WIMP Annihilation
- The last Complex WIMPs standing
- Search for dark matter signals towards a selection of recently-detected DES dwarf galaxy satellites of the Milky Way with H.E.S.S
- Search for Cosmic-Ray Electron and Positron Anisotropies with Seven Years of Fermi Large Area Telescope Data
- H.E.S.S. limits on line-like dark matter signatures in the 100 GeV to 2 TeV energy range close to the Galactic Centre
- Dark matter halo shapes in the Auriga simulations
- VERITAS Observations of the Galactic Center Region at Multi-TeV Gamma-Ray Energies
- Combined searches for dark matter in dwarf spheroidal galaxies observed with the MAGIC telescopes, including new data from Coma Berenices and Draco
- Split Dirac Supersymmetry: An Ultraviolet Completion of Higgsino Dark Matter
- Validation of open-source science tools and background model construction in -ray astronomy
- Search for gamma-ray emission from -wave dark matter annihilation in the Galactic Center
- Amplified J-factors in the Galactic Center for velocity-dependent darkmatter annihilation in FIRE simulations
- Evidence for a high-energy tail in the gamma-ray spectra of globular clusters
- A Run-Wise Simulation and Analysis Framework for Imaging Atmospheric Cherenkov Telescope Arrays
- Velocity-dependent J-factors for annihilation radiation from cosmological simulations
- The Race to Find Split Higgsino Dark Matter
- Precise yield of high-energy photons from Higgsino dark matter annihilation
- Indirect searches for dark matter bound state formation and level transitions
- Search for dark matter annihilation in the dwarf irregular galaxy WLM with H.E.S.S
- Current and future gamma-ray searches for dark-matter annihilation beyond the unitarity limit
- Cherenkov Telescope Array sensitivity to the putative millisecond pulsar population responsible for the Galactic center excess
- Dark Matter search in dwarf irregular galaxies with the Fermi Large Area Telescope
- Matching resummed endpoint and continuum -ray spectra from dark-matter annihilation
- Discovery potential for split supersymmetry with thermal dark matter
- Study of the very high energy gamma-ray spectrum from the Galactic Center and future prospects
- The Velocity-Dependent -factor of the Milky Way Halo: Does What Happens in the Galactic Bulge Stay in the Galactic Bulge?
Cited by in corpus (7)
- Multi-TeV dark matter density in the inner Milky Way halo: spectral and dynamical constraints
- Cosmic Ray Antihelium from a Strongly Coupled Dark Sector
- TeV gamma-ray sensitivity to velocity-dependent dark matter models in the Galactic Center
- Minimal dark matter in grand unification
- LHAASO Galactic Plane -rays Strongly Constrain Heavy Dark Matter
- Nonparametric signal separation in very-high-energy gamma ray observations with probabilistic neural networks
- Search for gamma-ray spectral lines from dark matter annihilation with the H.E.S.S. Inner Galaxy Survey