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摘要
En 中文
We point out that the accidental U(1)(B-L) symmetry can arise from a finite modular symmetry Gamma(N) in the type-I seesaw. The finite modular symmetry is spontaneously broken in such a way that the residual Z(N)(T) discrete symmetry, associated with the T-transformation which shifts the modulus tau -> tau + 1, remains unbroken. This discrete Z(N)(T) symmetry mimics U(1)(B-L), and hence the majoron appears as a pseudo Nambu-Goldstone boson of U(1)(B-L). Without introducing additional interactions, the modulus tau can be stabilized by the Coleman-Weinberg (CW) potential given by the Majorana mass terms of the right-handed neutrinos. We study cosmological implications of the majoron, with particular interests in the dark matter and dark radiation, where the latter may alleviate the Hubble tension. We also find that the CW potential can have a wide range of nearly exponential shape which prevents tau from overshooting, and makes the amount of dark radiation not too large.
Keyword:
Cosmology of Theories BSM
Discrete Symmetries
Models for Dark Matter
New Light Particles
期刊
IF:
5.5
论文数:
3.9W
被引数:
13.7W
机构
引用论文
Characterization of a high-pressure flame facility using high-speed chemiluminescence and OH LIF imaging使用高速化学发光和OH LIF成像对高压火焰装置进行表征

