English

Cosmic Evolution of Lepton Flavor Charges

High Energy Physics - Phenomenology 2022-02-09 v2

Abstract

In the early Universe above the weak scale, both baryon BB and lepton LL numbers are violated by nonperturabive effects in the Standard Model while BLB-L remains conserved. Introducing new physics which violates perturbatively LL and/or BB, one can generate dynamically a nonzero BLB-L charge and hence a nonzero BB charge. In this work, we focus on the former scenario which is also known as leptogenesis. We show how to describe the evolutions of lepton flavor charges taking into account the complete Standard Model lepton flavor and spectator effects in a unified and lepton flavor basis-independent way. The recipe we develop can be applied to any leptogenesis model with arbitrary number of new scalars carrying nonzero hypercharges and is valid for cosmic temperature ranging from 101510^{15} GeV down to the weak scale. We demonstrate that in order to describe the physics in a basis-independent manner and to include lepton flavor effect consistently it is necessary to describe both left-handed and right-handed lepton charges in terms of density matrices. This is a crucial point since physics should be basis independent. As examples, we apply the formalism to type-I and type-II leptogenesis models where in the latter case, a flavor-covariant formalism is indispensable.

Keywords

Cite

@article{arxiv.2109.04478,
  title  = {Cosmic Evolution of Lepton Flavor Charges},
  author = {Chee Sheng Fong},
  journal= {arXiv preprint arXiv:2109.04478},
  year   = {2022}
}

Comments

46 pages, 4 figures and 4 appendices. Appendix B is new. Update to match the published version

R2 v1 2026-06-24T05:50:17.699Z