论文标题
在最小左右对称模型中,低能CP违反CP的瘦素发生
Leptogenesis from low-energy CP violation in minimal left-right symmetric model
论文作者
论文摘要
我们对最小的左右对称模型进行了热未经饮用的瘦素发生分析,其离散左右对称性被识别为概括或电荷共轭。当Lepton Yukawa部门不间断左右对称性时,中微子狄拉克耦合矩阵完全由中微子质量和混合角度确定,从而允许违反CP违反产生瘦素发生的CP。通过两种Lepton的不对称产生方式,I型和混合I $+$ $ II中微子质量生成机制均被考虑。在数值上求解Boltzmann方程后,我们发现Lepton混合矩阵中的低能量CP相可以成功产生观察到的Baryon不对称性,在某些情况下,Dirac CP相可能是CP违规的唯一来源。最后,我们讨论了低能CP相位测量,瘦素发生和中微子双β衰减之间的相互作用。我们表明,可以在下一代中微子双β衰减实验中探测成功的瘦素发生的可行模型。
We perform a thermal unflavored leptogenesis analysis on minimal left-right symmetric models with discrete left-right symmetry identified as generalized parity or charge conjugation. When left-right symmetry is unbroken in the lepton Yukawa sector, the neutrino Dirac coupling matrix is completely determined by neutrino masses and mixing angles, allowing CP violation needed to generate leptogenesis totally resides in the low-energy sector. With two lepton asymmetry generation ways, both type I and mixed type I$+$II neutrino mass generation mechanisms are considered. After solving the Boltzmann equations numerically, we find that the low-energy CP phases in the lepton mixing matrix can successfully produce the observed baryon asymmetry, and in some cases, the Dirac CP phase can be the only source of CP violation. Finally, we discuss the interplay among low-energy CP phase measurements, leptogenesis, and neutrinoless double beta decay. We show that the viable models for successful leptogenesis can be probed in next-generation neutrinoless double-beta decay experiments.