4.6 Article

Hot leptogenesis from thermal Dark Matter

出版社

IOP Publishing Ltd
DOI: 10.1088/1475-7516/2017/10/042

关键词

baryon asymmetry; dark matter theory; leptogenesis; neutrino masses from cosmology

资金

  1. National Science Centre (Poland) [DEC2014/15/B/ST2/00108]
  2. Spanish MINECO [FPA2014-54459-P]
  3. Sao Paulo Research Foundation (FAPESP) [2012/10995-7, 2013/13689-7, 2017/02747-7]
  4. European Union's Horizon research and innovation programme under the Marie Sklodowska-Curie grant [674896, 690575]
  5. Universidad Antonio Narino [2017239]
  6. U.S. Department of Energy, Office of Science, Office of High Energy Physics [DE-AC02-07CH11359]

向作者/读者索取更多资源

In this work, we investigate a scenario in which heavy Majorana Right-Handed Neutrinos (RHNs) are in thermal equilibrium with a dark sector with temperature higher than the Standard Model (SM) thermal bath. Specifically, we consider the scenario in which thermal Dark Matter (DM) abundance is fixed from the freeze-out of DM annihilations into RHNs. Due to the inert nature of the RHNs, we show that it is possible for the two sectors to remain thermally decoupled by having more than two generations of the RHNs. The hotter temperature implies higher abundances of DM and RHNs with the following consequences. For leptogenesis, an enhancement in efficiency up to a factor of 51.6 can be obtained, though a resonant enhancement of CP violation is still required due to an upper mass bound of about 4TeV for the RHNs. For the DM, an enhanced annihilation cross section up to a factor of 51.6 is required to obtain the correct DM abundance. This scenario can be probed via indirect detection of DM annihilating into RHNs, which then decay into h nu, Z nu and W(+/-)l(+/-) with an enhanced annihilation cross section above the typical thermal value.

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