English

New Constraints on Dark Matter and Cosmic Neutrino Profiles through Gravity

High Energy Physics - Phenomenology 2024-03-11 v1 Cosmology and Nongalactic Astrophysics General Relativity and Quantum Cosmology High Energy Physics - Experiment High Energy Physics - Theory

Abstract

We derive purely gravitational constraints on dark matter and cosmic neutrino profiles in the solar system using asteroid (101955) Bennu. We focus on Bennu because of its extensive tracking data and high-fidelity trajectory modeling resulting from the OSIRIS-REx mission. We find that the local density of dark matter is bound by ρDM3.3×1015  kg/m36×106ρˉDM\rho_{\rm DM}\lesssim 3.3\times 10^{-15}\;\rm kg/m^3 \simeq 6\times10^6\,\bar{\rho}_{\rm DM}, in the vicinity of 1.1\sim 1.1 au (where ρˉDM0.3  GeV/cm3\bar{\rho}_{\rm DM}\simeq 0.3\;\rm GeV/cm^3). We show that high-precision tracking data of solar system objects can constrain cosmic neutrino overdensities relative to the Standard Model prediction nˉν\bar{n}_{\nu}, at the level of ηnν/nˉν1.7×1011(0.1  eV/mν)\eta\equiv n_\nu/\bar{n}_{\nu}\lesssim 1.7 \times 10^{11}(0.1 \;{\rm eV}/m_\nu) (Saturn), comparable to the existing bounds from KATRIN and other previous laboratory experiments (with mνm_\nu the neutrino mass). These local bounds have interesting implications for existing and future direct-detection experiments. Our constraints apply to all dark matter candidates but are particularly meaningful for scenarios including solar halos, stellar basins, and axion miniclusters, which predict or allow overdensities in the solar system. Furthermore, introducing a DM-SM long-range fifth force with a strength α~D\tilde{\alpha}_D times stronger than gravity, Bennu can set a constraint on ρDMρˉDM(6×106/α~D)\rho_{\rm DM}\lesssim \bar{\rho}_{\rm DM}\left(6 \times 10^6/\tilde{\alpha}_D\right). These constraints can be improved in the future as the accuracy of tracking data improves, observational arcs increase, and more missions visit asteroids.

Keywords

Cite

@article{arxiv.2210.03749,
  title  = {New Constraints on Dark Matter and Cosmic Neutrino Profiles through Gravity},
  author = {Yu-Dai Tsai and Joshua Eby and Jason Arakawa and Davide Farnocchia and Marianna S. Safronova},
  journal= {arXiv preprint arXiv:2210.03749},
  year   = {2024}
}

Comments

2 figures, 2 tables, 9 pages plus references