Non-Abelian dark gauge forces that do not couple directly to ordinary matter may be realized in nature. The minimal form of such a dark force is a pure Yang-Mills theory. If the dark sector is reheated in the early Universe, it will be realized as a set of dark gluons at high temperatures and as a collection of dark glueballs at lower temperatures, with a cosmological phase transition from one form to the other. Despite being dark, the gauge fields of the new force can connect indirectly to the standard model through nonrenormalizable operators. These operators will transfer energy between the dark and visible sectors, and they allow some or all of the dark glueballs to decay. In this work we investigate the cosmological evolution and decays of dark glueballs in the presence of connector operators to the standard model. Dark glueball decays can modify cosmological and astrophysical observables, and we use these considerations to put very strong limits on the existence of pure non-Abelian dark forces. On the other hand, if one or more of the dark glueballs are stable, we find that they can potentially make up the dark matter of the Universe.
机构:
Korea Inst Adv Study, Seoul 02455, South Korea
KIAS, Quantum Universe Ctr, Seoul 02455, South KoreaKorea Inst Adv Study, Seoul 02455, South Korea
Ko, P.
Tang, Yong
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Korea Inst Adv Study, Seoul 02455, South Korea
Univ Tokyo, Dept Phys, Fac Sci, Bunkyo Ku, Tokyo 1330033, JapanKorea Inst Adv Study, Seoul 02455, South Korea
机构:
Inst Res Fundamental Sci IPM, Sch Particles & Accelerators, Tehran 193955531, IranInst Res Fundamental Sci IPM, Sch Particles & Accelerators, Tehran 193955531, Iran
Elahi, Fatemeh
Najafabadi, Mojtaba Mohammadi
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Inst Res Fundamental Sci IPM, Sch Particles & Accelerators, Tehran 193955531, IranInst Res Fundamental Sci IPM, Sch Particles & Accelerators, Tehran 193955531, Iran