4.4 Article

Dark quarkonium formation in the early universe

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 6, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP06(2018)135

关键词

Phenomenological Models; QCD Phenomenology

资金

  1. Israel Science Foundation [720/15]
  2. United-States-Israel Binational Science Foundation (BSF) [2014397]
  3. ICORE Program of the Israel Planning and Budgeting Committee [1937/12]
  4. NSF [PHY-1620074, PHY-1719877]
  5. Maryland Center for Fundamental Physics
  6. Lady Davis Foundation
  7. MIUR-PRIN [2015P5SBHT 003]
  8. Samsung Science & Technology Foundation
  9. [NSF-PHY-1607611]

向作者/读者索取更多资源

The relic abundance of heavy stable particles charged under a confining gauge group can be depleted by a second stage of annihilations near the deconfinement temperature. This proceeds via the formation of quarkonia-like states, in which the heavy pair subsequently annihilates. The size of the quarkonium formation cross section was the subject of some debate. We estimate this cross section in a simple toy model. The dominant process can be viewed as a rearrangement of the heavy and light quarks, leading to a geometric cross section of hadronic size. In contrast, processes in which only the heavy constituents are involved lead to mass-suppressed cross sections. These results apply to any scenario with bound states of sizes much larger than their inverse mass, such as U(1) models with charged particles of different masses, and can be used to construct ultra-heavy dark-matter models with masses above the naive unitarity bound. They are also relevant for the cosmology of any stable colored relic.

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