GAPS: A New Cosmic Ray Anti-matter Experiment
Abstract
The General AntiParticle Spectrometer (GAPS) is a balloon-borne instrument designed to detect cosmic-ray antimatter using the novel exotic atom technique, obviating the strong magnetic fields required by experiments like AMS, PAMELA, or BESS. It will be sensitive to primary antideuterons with kinetic energies of GeV/nucleon, providing some overlap with the previously mentioned experiments at the highest energies. For day balloon flights, and standard classes of primary antideuteron propagation models, GAPS will be sensitive to GeV c WIMPs with a dark-matter flux to astrophysical flux ratio approaching 100. This clean primary channel is a key feature of GAPS and is crucial for a rare event search. Additionally, the antiproton spectrum will be extended with high statistics measurements to cover the GeV domain. For GeV GAPS data will be complementary to existing experiments, while GeV explores a new regime. The first flight is scheduled for late 2020 in Antarctica. These proceedings will describe the astrophysical processes and backgrounds relevant to the dark matter search, a brief discussion of detector operation, and construction progress made to date.
Keywords
Cite
@article{arxiv.1809.09714,
title = {GAPS: A New Cosmic Ray Anti-matter Experiment},
author = {S. Quinn and T. Aramaki and R. Bird and M. Boezio and S. E. Boggs and V. Bonvicini and D. Campana and W. W. Craig and P. von Doetinchem and E. Everson and L. Fabris and F. Gahbauer and C. Gerrity and H. Fuke and C. J. Hailey and T. Hayashi and C. Kato and A. Kawachi and M. Kozai and A. Lowell and M. Martucci and S. I. Mognet and R. Munini and K. Munakata and S. Okazaki and R. A. Ong and G. Osteria and K. Perez and J. Ryan and V. Re and F. Rogers and N. Saffold and Y. Shimizu and R. Sparvoli and A. Stoessl and E. Vannuccini and A. Yoshida and T. Yoshida and G. Zampa and J. Zweerink},
journal= {arXiv preprint arXiv:1809.09714},
year = {2018}
}
Comments
Talk presented CIPANP2018. 13 pages, LaTeX, 7 figures. Higher resolution figs at http://gaps1.astro.ucla.edu/gaps/papers2018/cipanp18