Dark matter studies entrain nuclear physics

作者:Gardner Susan*; Fuller George M
来源:Progress in Particle and Nuclear Physics, 2013, 71: 167-184.
DOI:10.1016/j.ppnp.2013.03.001

摘要

We review theoretically well-motivated dark-matter candidates, and pathways to their discovery, in the light of recent results from collider physics, astrophysics, and cosmology. Taken in aggregate, these encourage broader thinking in regards to possible dark-matter candidates - dark-matter need not be made of %26quot;WIMPs%26quot;, i.e., elementary particles with weak-scale masses and interactions. Facilities dedicated to nuclear physics are well-poised to investigate certain non-WIMP models. In parallel to this, developments in observational cosmology permit probes of the relativistic energy density at early epochs and thus provide new ways to constrain dark-matter models, provided nuclear physics inputs are sufficiently well-known. The emerging confluence of accelerator, astrophysical, and cosmological constraints permit searches for dark-matter candidates in a greater range of masses and interaction strengths than heretofore possible.

  • 出版日期2013-7