Sensitivity of the COHERENT Experiment to Accelerator-Produced Dark Matter
Abstract
The COHERENT experiment is well poised to test sub-GeV dark matter models using low-energy recoil detectors sensitive to coherent elastic neutrino-nucleus scattering (CEvNS) in the -DAR neutrino beam produced by the Spallation Neutron Source. We show how a planned 750-kg liquid argon scintillation detector would place leading limits on scalar light dark matter models, over two orders of magnitude of dark matter mass, for dark matter particles produced through vector and leptophobic portals in the absence of other effects beyond the standard model. The characteristic timing structure of a -DAR beam allows a unique opportunity for constraining systematic uncertainties on the standard model background in a time window where signal is not expected, enhancing expected sensitivity. Additionally, we discuss future prospects, further increasing the discovery potential of CEvNS detectors. Such methods would test the calculated thermal dark matter abundance for all couplings within the vector portal model over an order of magnitude of dark matter masses.
Cite
@article{arxiv.1911.06422,
title = {Sensitivity of the COHERENT Experiment to Accelerator-Produced Dark Matter},
author = {COHERENT Collaboration and D. Akimov and P. An and C. Awe and P. S. Barbeau and B. Becker and V. Belov and M. A. Blackston and A. Bolozdynya and B. Cabrera-Palmer and N. Chen and E. Conley and R. L. Cooper and J. Daughhetee and M. del Valle Coello and J. A. Detwiler and M. R. Durand and Y. Efremenko and S. R. Elliott and L. Fabris and M. Febbraro and W. Fox and A. Galindo-Uribarri and M. P. Green and K. S. Hansen and M. R. Heath and S. Hedges and T. Johnson and M. Kaemingk and L. J. Kaufman and A. Khromov and A. Konovalov and E. Kozlova and A. Kumpan and L. Li and J. T. Librande and J. M. Link and J. Liu and K. Mann and D. M. Markoff and H. Moreno and P. E. Mueller and J. Newby and D. S. Parno and S. Penttila and D. Pershey and D. Radford and R. Rapp and H. Ray and J. Raybern and O. Razuvaeva and D. Reyna and G. C. Rich and D. Rudik and J. Runge and D. J. Salvat and K. Scholberg and A. Shakirov and G. Simakov and G. Sinev and W. M. Snow and V. Sosnovtsev and B. Suh and R. Tayloe and K. Tellez-Giron-Flores and R. T. Thornton and I. Tolstukhin and J. Vanderwerp and R. L. Varner and C. J. Virtue and G. Visser and C. Wiseman and T. Wongjirad and J. Yang and Y. -R. Yen and J. Yoo and C. -H. Yu and J. Zettlemoyer},
journal= {arXiv preprint arXiv:1911.06422},
year = {2020}
}