Decaying majoron dark matter and neutrino masses

被引:0
|
作者
Lattanzi, Massimiliano
机构
来源
RELATIVISTIC ASTROPHYSICS | 2008年 / 966卷
关键词
dark matter; neutrinos; cosmic microwave background radiation;
D O I
暂无
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We review our recent proposal of the majoron as a suitable warm dark matter candidate. The majoron is the Goldstone boson associated to the spontaneous breaking of ungauged lepton number, one of the mechanisms proposed to give rise to neutrino masses. The majoron can acquire a mass through quantum gravity effects, and can possibly account for the observed dark matter component of the Universe. We present constraints on the majoron lifetime, mass and abundance obtained by the analysis of the cosmic microwave background data. We find that, in the case of thermal production, the limits for the majoron mass read 0.12 keV < m(J) < 0.17 keV, and discuss how these limits are modified in the non-thermal case. The majoron lifetime tau is constrained to be greater than or similar to 250Gyr.. We also apply this results to a given seesaw model for the generation of neutrino masses, and find that this constraints the energy scale for the lepton number breaking phase transition to be greater than or similar to 10(6) GeV. We thus find that the majoron decaying dark matter (DDM) scenario fits nicely in models where neutrino masses arise a la seesaw, and may lead to other possible cosmological implications.
引用
收藏
页码:163 / 169
页数:7
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