New Horizons: Scalar and Vector Ultralight Dark Matter
High Energy Physics - Experiment
2022-03-29 v1 Cosmology and Nongalactic Astrophysics
High Energy Physics - Phenomenology
Instrumentation and Detectors
Quantum Physics
Abstract
The last decade has seen unprecedented effort in dark matter model building at all mass scales coupled with the design of numerous new detection strategies. Transformative advances in quantum technologies have led to a plethora of new high-precision quantum sensors and dark matter detection strategies for ultralight (eV) bosonic dark matter that can be described by an oscillating classical, largely coherent field. This white paper focuses on searches for wavelike scalar and vector dark matter candidates.
Cite
@article{arxiv.2203.14915,
title = {New Horizons: Scalar and Vector Ultralight Dark Matter},
author = {D. Antypas and A. Banerjee and C. Bartram and M. Baryakhtar and J. Betz and J. J. Bollinger and C. Boutan and D. Bowring and D. Budker and D. Carney and G. Carosi and S. Chaudhuri and S. Cheong and A. Chou and M. D. Chowdhury and R. T. Co and J. R. Crespo López-Urrutia and M. Demarteau and N. DePorzio and A. V. Derbin and T. Deshpande and M. D. Chowdhury and L. Di Luzio and A. Diaz-Morcillo and J. M. Doyle and A. Drlica-Wagner and A. Droster and N. Du and B. Döbrich and J. Eby and R. Essig and G. S. Farren and N. L. Figueroa and J. T. Fry and S. Gardner and A. A. Geraci and A. Ghalsasi and S. Ghosh and M. Giannotti and B. Gimeno and S. M. Griffin and D. Grin and D. Grin and H. Grote and J. H. Gundlach and M. Guzzetti and D. Hanneke and R. Harnik and R. Henning and V. Irsic and H. Jackson and D. F. Jackson Kimball and J. Jaeckel and M. Kagan and D. Kedar and R. Khatiwada and S. Knirck and S. Kolkowitz and T. Kovachy and S. E. Kuenstner and Z. Lasner and A. F. Leder and R. Lehnert and D. R. Leibrandt and E. Lentz and S. M. Lewis and Z. Liu and J. Manley and R. H. Maruyama and A. J. Millar and V. N. Muratova and N. Musoke and S. Nagaitsev and O. Noroozian and C. A. J. O'Hare and J. L. Ouellet and K. M. W. Pappas and E. Peik and G. Perez and A. Phipps and N. M. Rapidis and J. M. Robinson and V. H. Robles and K. K. Rogers and J. Rudolph and G. Rybka and M. Safdari and M. Safdari and M. S. Safronova and C. P. Salemi and P. O. Schmidt and T. Schumm and A. Schwartzman and J. Shu and M. Simanovskaia and J. Singh and S. Singh and M. S. Smith and W. M. Snow and Y. V. Stadnik and C. Sun and A. O. Sushkov and T. M. P. Tait and V. Takhistov and D. B. Tanner and D. J. Temples and P. G. Thirolf and J. H. Thomas and M. E. Tobar and O. Tretiak and Y. -D. Tsai and J. A. Tyson and M. Vandegar and S. Vermeulen and L. Visinelli and E. Vitagliano and Z. Wang and D. J. Wilson and L. Winslow and S. Withington and M. Wooten and J. Yang and J. Ye and B. A. Young and F. Yu and M. H. Zaheer and T. Zelevinsky and Y. Zhao and K. Zhou},
journal= {arXiv preprint arXiv:2203.14915},
year = {2022}
}
Comments
Snowmass 2021 White Paper