Constraints on long-lived di-baryons and di-baryonic dark matter
Abstract
A color-flavor-spin singlet state of six quarks (, or sexaquark) has been argued to be a potentially undiscovered deeply bound, long-lived hadron. Theoretical calculations of the mass have been made in the literature, widely varying from deeply-bound GeV to weakly-bound GeV. Given the spread of the mass predictions, it is vital to derive observational constraints on the state as a function of the mass. The transition rates between and two baryons are governed by , the effective Yukawa coupling between and two baryons with the same quantum numbers as . In this paper, we place strong observational constraints on , improving on various previous limits; additional limits assuming is dark matter are also presented.
Keywords
Cite
@article{arxiv.2306.03123,
title = {Constraints on long-lived di-baryons and di-baryonic dark matter},
author = {Glennys R. Farrar and Zihui Wang},
journal= {arXiv preprint arXiv:2306.03123},
year = {2023}
}
Comments
18 pages, 8 figures. v2 added a literature review section and improved presentation clarity