论文标题

在非世界性的$ u(1)_ {x} $扩展Susy理论中解释Muon $ G-2 $异常

Explaining muon $g-2$ anomaly in a non-universal $U(1)_{X}$ extended SUSY theory

论文作者

Alvarado, J. S., Bulla, M. A., Martinez, D. G., Martinez, R.

论文摘要

A non-universal $U(1)_{X}$ extension to the Standard Model composed of two scalar doublets and two scalar singlets together with three additional quark singlets and two lepton singlets and three generations of right-handed and Majorana neutrinos is made to explain lepton mass hierarchy, neutrino masses via inverse seesaw mechanism and muon anomalous magnetic moment in an anomaly free framework.在当前模型中,由于在不同尺度上的真空期望值,外来模型颗粒获得了质量,但是电子和最浅的中微子是无质量的树水平,但在一环水平上是巨大的。通过考虑数值探索并在希格斯质量,中微子质量差异和PMN矩阵的约束下,发现仅由于异国情调的中微子与带电标量相互作用而产生的贡献与MUON $ G-2 $相关,尽管它们是负面的。因此,考虑了SUSY扩展,发现MUON $ G-2 $可以通过允许$ u(1)_ {x} $真空期望值在TEV量表中放置,这要归功于Susy Soft-Break-Break-Break-Break-Break-Break-Break-wortive of至少$ \ sim 10^{5}^{5} $ gev Masses。因此,由于异国情调中微子与$ W $仪表玻色子相互作用而产生的贡献是积极的,并且不再可以忽略,这增加了所有其他贡献可能解释了异常现象。

A non-universal $U(1)_{X}$ extension to the Standard Model composed of two scalar doublets and two scalar singlets together with three additional quark singlets and two lepton singlets and three generations of right-handed and Majorana neutrinos is made to explain lepton mass hierarchy, neutrino masses via inverse seesaw mechanism and muon anomalous magnetic moment in an anomaly free framework. In the present model, exotic and Standard Model particles acquire mass thanks to vacuum expectation values at different scales, yet the electron and the lightest neutrino are tree level massless but massive at one-loop level. By considering a numerical exploration and under the constraint of the Higgs mass, neutrino mass differences and PMNS matrix, it is found that only contributions due to exotic neutrinos interacting with charged scalars are relevant to muon $g-2$, though they are negative. Thus, the SUSY extension is considered and it is found that muon $g-2$ can be explained by allowing $U(1)_{X}$ vacuum expectation values to lie in the TeV scale thanks to SUSY soft-breaking interactions for at least $\sim 10^{5}$ GeV masses. Thus, the contribution due to exotic neutrinos interacting with $W$ gauge bosons is positive and no longer negligible which added to all other contributions might explain the anomaly.

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