论文标题
在3-3-1模型的希格斯光谱上,带有标量的六分光量发挥了II型SEESAW机构
On the Higgs spectra of the 3-3-1 model with the sextet of scalars engendering the type II seesaw mechanism
论文作者
论文摘要
在带有右中微子的3-3-1模型中,标量表的三个三重三联体可产生对称破坏的正确顺序,$ su(3)_c \ times su(3)_l \ times _x _x \ times u(1)_x \ rightarrow su(rightarrow su(3) u(1)_ {em} $,除中微子外,为所有费米子生成质量。可以通过在原始标量含量中添加一个六分钟标量来实现微小的中微子质量。因此,它出现了一个非常复杂的标量领域,涉及明确违反Lepton数字的术语。这种情况的现象学发展的主要障碍是了解其标量频谱,因为现在有15个大规模的标量粒子。这项工作的提议是对这种标量扇区进行详尽的分析,而Lepton数字在低,电子和高能尺度上明确违反了潜力中的三线性项。第一种情况可以通过分析来解决,作为一个很好的结果,我们观察到,这种情况的标量含量分为两类:一种属于331能量量表,另一个属于EWSB能量量表,最后恢复了众所周知的THDM+三重态。对于其他情况,标量扇区只能通过数值解决。因此,我们提出了一种非常普遍的方法来对潜力进行数值研究,避免了可以使我们得出的结论,而没有基础。我们表明,如果Lepton数字在Electroweak量表上明确违反,则可以恢复与以前的情况相同的THDM+Triplet物理学。在所有可能性中,我们将注意力集中在一个产生3HDM+三重态方案的特殊情况下。在最后一个情况下,当Lepton数在高能尺度上违反时,六重奏会变得非常巨大,并且与3-3-1模型的原始标量含量相比。
In the 3-3-1 model with right-handed neutrinos, three triplets of scalars engender the correct sequence of symmetry breaking, $SU(3)_C \times SU(3)_L \times U(1)_X \rightarrow SU(3)_C \times SU(2)_L \times U(1)_Y \rightarrow SU(3)_C \times U(1)_{EM}$, generating mass for all fermions, except neutrinos. Tiny neutrino masses may be achieved by adding one sextet of scalars to the original scalar content. As consequence, it emerges a very complex scalar sector, involving terms that violate lepton number explicitly, too. The main obstacle to the development of the phenomenology of such scenario is the knowledge of its spectrum of scalars since, now, there are 15 massive scalar particles on it. The proposal of this work is to do an exhaustive analysis of such scalar sector with lepton number being explicitly violated at low, electroweak and high energy scales by means of trilinear terms in the potential. The first case can be addressed analytically and, as a nice result, we have observed that the scalar content of such case is split into two categories: One belonging to the 331 energy scale and the other belonging to the EWSB energy scale, with the last recovering the well known THDM+triplet. For the other cases, the scalar sector can be addressed only numerically. Hence, we proposed a very general approach for the numerical study of the potential, avoiding simplifications that can make us reach conclusions without foundation. We show that, in the case of lepton number being explicitly violated at electroweak scale, it is possible to recover the same physics of the THDM+triplet, as the previous case. Among all the possibilities, we call the attention to one special case which generates the 3HDM+triplet scenario. For the last case, when lepton number is violated at high energy scale, the sextet become very massive and decouples from the original scalar content of the 3-3-1 model.