English

Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated Above Ground

High Energy Physics - Experiment 2021-10-13 v4 Cosmology and Nongalactic Astrophysics Instrumentation and Detectors

Abstract

We present limits on spin-independent dark matter-nucleon interactions using a 10.610.6 g\mathrm{g} Si athermal phonon detector with a baseline energy resolution of σE=3.86±0.04\sigma_E=3.86 \pm 0.04 (stat.)0.00+0.19(\mathrm{stat.})^{+0.19}_{-0.00} (syst.)(\mathrm{syst.}) eV\mathrm{eV}. This exclusion analysis sets the most stringent dark matter-nucleon scattering cross-section limits achieved by a cryogenic detector for dark matter particle masses from 9393 to 140140 MeV/c2\mathrm{MeV}/c^2, with a raw exposure of 9.99.9 gd\mathrm{g}\cdot\mathrm{d} acquired at an above-ground facility. This work illustrates the scientific potential of detectors with athermal phonon sensors with eV-scale energy resolution for future dark matter searches.

Keywords

Cite

@article{arxiv.2007.14289,
  title  = {Light Dark Matter Search with a High-Resolution Athermal Phonon Detector Operated Above Ground},
  author = {I. Alkhatib and D. W. P. Amaral and T. Aralis and T. Aramaki and I. J. Arnquist and I. Ataee Langroudy and E. Azadbakht and S. Banik and D. Barker and C. Bathurst and D. A. Bauer and L. V. S. Bezerra and R. Bhattacharyya and T. Binder and M. A. Bowles and P. L. Brink and R. Bunker and B. Cabrera and R. Calkins and R. A. Cameron and C. Cartaro and D. G. Cerdeño and Y. -Y. Chang and M. Chaudhuri and R. Chen and N. Chott and J. Cooley and H. Coombes and J. Corbett and P. Cushman and F. De Brienne and M. L. di Vacri and M. D. Diamond and E. Fascione and E. Figueroa-Feliciano and C. W. Fink and K. Fouts and M. Fritts and G. Gerbier and R. Germond and M. Ghaith and S. R. Golwala and H. R. Harris and N. Herbert and B. A. Hines and M. I. Hollister and Z. Hong and E. W. Hoppe and L. Hsu and M. E. Huber and V. Iyer and D. Jardin and A. Jastram and V. K. S. Kashyap and M. H. Kelsey and A. Kubik and N. A. Kurinsky and R. E. Lawrence and A. Li and B. Loer and E. Lopez Asamar and P. Lukens and D. MacDonell and D. B. MacFarlane and R. Mahapatra and V. Mandic and N. Mast and A. J. Mayer and H. Meyer zu Theenhausen and É. M. Michaud and E. Michielin and N. Mirabolfathi and B. Mohanty and J. D. Morales Mendoza and S. Nagorny and J. Nelson and H. Neog and V. Novati and J. L. Orrell and S. M. Oser and W. A. Page and P. Pakarha and R. Partridge and R. Podviianiuk and F. Ponce and S. Poudel and M. Pyle and W. Rau and E. Reid and R. Ren and T. Reynolds and A. Roberts and A. E. Robinson and T. Saab and B. Sadoulet and J. Sander and A. Sattari and R. W. Schnee and S. Scorza and B. Serfass and D. J. Sincavage and C. Stanford and J. Street and D. Toback and R. Underwood and S. Verma and A. N. Villano and B. von Krosigk and S. L. Watkins and L. Wills and J. S. Wilson and M. J. Wilson and J. Winchell and D. H. Wright and S. Yellin and B. A. Young and T. C. Yu and E. Zhang and H. G. Zhang and X. Zhao and L. Zheng and J. Camilleri and Yu. G. Kolomensky and S. Zuber},
  journal= {arXiv preprint arXiv:2007.14289},
  year   = {2021}
}

Comments

7 pages, 4 figures, this version includes ancillary files from official data release