Discovery potential for directional Dark Matter detection with nuclear emulsions
arXiv:1705.00613 · doi:10.1140/epjc/s10052-018-6060-1
Abstract
Direct Dark Matter searches are nowadays one of the most fervid research topics with many experimental efforts devoted to the search for nuclear recoils induced by the scattering of Weakly Interactive Massive Particles (WIMPs). Detectors able to reconstruct the direction of the nucleus recoiling against the scattering WIMP are opening a new frontier to possibly extend Dark Matter searches beyond the neutrino background. Exploiting directionality would also prove the galactic origin of Dark Matter with an unambiguous signal-to-background separation. Indeed, the angular distribution of recoiled nuclei is centered around the direction of the Cygnus constellation, while the background distribution is expected to be isotropic. Current directional experiments are based on gas TPC whose sensitivity is limited by the small achievable detector mass. In this paper we present the discovery potential of a directional experiment based on the use of a solid target made of newly developed nuclear emulsions and of optical read-out systems reaching unprecedented nanometric resolution.
8 pages, 12 figures
References in corpus (7)
- Asymptotic formulae for likelihood-based tests of new physics
- Implication of neutrino backgrounds on the reach of next generation dark matter direct detection experiments
- A New Model-Independent Method for Extracting Spin-Dependent Cross Section Limits from Dark Matter Searches
- Directional statistics for WIMP direct detection
- Readout technologies for directional WIMP Dark Matter detection
- Velocity distributions and annual-modulation signatures of weakly-interacting massive particles
- Intrinsic neutron background of nuclear emulsions for directional Dark Matter searches
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- State of the Art in Direct Dark Matter Detectors: Technologies, Performance, and Future Directions