论文标题

带有深色Lepton调味料的调味$(g-2)_ $

Flavoured $(g-2)_μ$ with Dark Lepton Seasoning

论文作者

Acaroğlu, Harun, Agrawal, Prateek, Blanke, Monika

论文摘要

作为对暗物质问题(DM)问题和MUON $(G-2)$异常的联合解释,我们提出了一种简化的Lepton-Flavour-Favour-Favour-Favour-Favour-Favour-Favour-Favour-Favour-Complex Conpectial Scalar DM,并耦合到标准模型(SM)的左侧和右手leptons。这两种相互作用均由相同的新型风味侵略耦合矩阵$λ$控制,但是我们允许耦合强度的相对缩放。 SM通过两个费米昂表示进一步扩展,分别为$ su(2)_l $ doublet和singlet,并调解了这些相互作用。费米子还通过新的Yukawa耦合将SM Higgs Doublet与SM Higgs搭配。为了研究模型的现象学,我们首先研究了对撞机搜索,风味实验,SM的精确测试,DM遗物密度以及直接以及间接检测实验的限制。然后,我们通过要求同时满足所有提到的约束来执行组合分析。我们使用此组合分析的结果,并检查模型是否能够在其可行的参数空间内无需进行微调的Lepton群众,在其可行的参数空间内适应$(G-2)_ $的异常。对于我们考虑的所有基准方案,我们发现可以达到$δA_μ^\ text {exp} $的中心值,而无需对Lepton群众产生太大的校正。因此,我们得出的结论是,该模型有资格成为一种可行且有吸引力的Lepton-Favour-Favour-DM模型,同时解决了$(G-2)_μ$异常。

As a joint explanation for the dark matter (DM) problem and the muon $(g-2)$ anomaly, we propose a simplified model of lepton-flavoured complex scalar DM with couplings to both the left- and right-handed leptons of the Standard Model (SM). Both interactions are governed by the same new flavour-violating coupling matrix $λ$, however we allow for a relative scaling of the coupling strength. The SM is further extended by two fermion representations, transforming as an $SU(2)_L$ doublet and singlet, respectively, and mediating these interactions. The fermions additionally couple to the SM Higgs doublet via a new Yukawa coupling. To study the model's phenomenology we first investigate constraints from collider searches, flavour experiments, precision tests of the SM, the DM relic density, and direct as well as indirect detection experiments individually. We then perform a combined analysis by demanding that all mentioned constraints are satisfied simultaneously. We use the results of this combined analysis and examine if the model is capable of accommodating the $(g-2)_μ$ anomaly within its viable parameter space without introducing fine-tuned lepton masses. For all benchmark scenarios we consider, we find that the central value of $Δa_μ^\text{exp}$ can be reached without generating too large corrections to the lepton masses. We hence conclude that this model qualifies as a viable and attractive lepton-flavoured DM model that at the same time solves the $(g-2)_μ$ anomaly.

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