论文标题

电子和MUON $ G-2 $一般风味的异常,可保存两种Higgs Doublets型号

Electron and muon $g-2$ anomalies in general flavour conserving two Higgs doublets models

论文作者

Botella, Francisco J., Cornet-Gomez, Fernando, Nebot, Miguel

论文摘要

通常,在Lepton部门,电子,MUON和TAU相互作用可以在强大的稳定框架中分离出稳定的稳定的重置化群体分析组进化,而在Lepton部门,电子,MUON和TAU相互作用可以分解两个HIGGS双重模型(2HDM),而没有标量风味变化的中性耦合(SFCNC)。在此框架中,Lepton风味普遍性(LFU)的破坏超出了大量比例,开放了可以适应带电瘦素的不同行为的可能性。我们在Leptonic Sector(G $ \ ell $ fc)中这些一般风味的模型分析了电子和MUON $(G-2)$异常。我们考虑了两个不同的型号,即I-G $ \ Ell $ FC和II-G $ \ Ell $ FC,其中Quark Yukawa耦合分别与I型和II型2HDM中的Quark Yukawa耦合重合。我们发现两种类型的解决方案可以完全再现$(g-2)$异常,并且与LEP和LHC的实验限制兼容,来自LFU,LFU,来自风味和电子物理学以及标量扇区的理论约束。在第一种解决方案中,所有新的标量在1--2.5 TEV范围内具有质量,两个双峰的真空期望值(VEV)的幅度非常相似,并且两个异常都以两个环的Barr-Zee贡献为主。该解决方案出现在两个模型中。在第二种类型的溶液中,一个环的贡献在MUON异常中占主导地位,所有新标量的质量均低于1 TEV,而VEV的比率在10--100范围内。第二个中性标量$ h $是新标量的较轻,质量在210--390 GEV范围内,而伪cal $ a $ a $较重,质量为400---900 GEV。新的带电标量$ h^\ pm $几乎与标量或伪凯尔级都退化。第二种解决方案仅出现在I-G $ \ Ell $ FC模型中。这两种解决方案都需要$ \ Mathbb {z} _ {2} $对称higgs潜力的对称。

In general two Higgs doublet models (2HDMs) without scalar flavour changing neutral couplings (SFCNC) in the lepton sector, the electron, muon and tau interactions can be decoupled in a robust framework, stable under renormalization group evolution. In this framework, the breaking of lepton flavour universality (LFU) goes beyond the mass proportionality, opening the possibility to accommodate a different behaviour among charged leptons. We analyze the electron and muon $(g-2)$ anomalies in the context of these general flavour conserving models in the leptonic sector (g$\ell$FC). We consider two different models, I-g$\ell$FC and II-g$\ell$FC, in which the quark Yukawa couplings coincide, respectively, with the ones in type I and in type II 2HDMs. We find two types of solutions that fully reproduce both $(g-2)$ anomalies, and which are compatible with experimental constraints from LEP and LHC, from LFU, from flavour and electroweak physics, and with theoretical constraints in the scalar sector. In the first type of solution, all the new scalars have masses in the 1--2.5 TeV range, the vacuum expectation values (vevs) of both doublets are quite similar in magnitude, and both anomalies are dominated by two loop Barr-Zee contributions. This solution appears in both models. In a second type of solution, one loop contributions are dominant in the muon anomaly, all new scalars have masses below 1 TeV, and the ratio of vevs is in the range 10--100. The second neutral scalar $H$ is the lighter among the new scalars, with a mass in the 210--390 GeV range while the pseudoscalar $A$ is the heavier, with a mass in the range 400--900 GeV. The new charged scalar $H^\pm$ is almost degenerate either with the scalar or with the pseudoscalar. This second type of solution only appears in the I-g$\ell$FC model. Both solutions require the soft breaking of the $\mathbb{Z}_{2}$ symmetry of the Higgs potential.

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