Secluded scalar dark matter and the muon anomalous magnetic moment

IF 3.4 3区 物理与天体物理 Q2 PHYSICS, NUCLEAR Journal of Physics G: Nuclear and Particle Physics Pub Date : 2024-05-26 DOI:10.1088/1361-6471/ad4379
Karim Ghorbani
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Abstract

We consider a dark matter (DM) model with a singlet scalar, χ, as our DM candidate, which is secluded from the standard model (SM) and annihilates to the singlet scalar, ϕ, via a contact interaction. The singlet scalar, ϕ, has a leptophilic interaction with the SM leptons and may decay leptonically at tree level, and decays into a pair of photons at loop level. The focus of this work is to consider DM masses below 10 GeV. A viable secluded region is found in the parameter space after imposing the observed relic density. There is a one-loop interaction between scalar DM and the atomic electron in this model. We then apply the available direct detection bounds from Xenon10, Xenon1T and DarkSide on the DM-electron elastic scattering cross section. While the model can explain the muon anomalous magnetic moment, we apply bounds from current and future lepton collider experiments.
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隐蔽标量暗物质与μ介子反常磁矩
我们考虑了一个暗物质(DM)模型,它有一个单子标量χ,作为我们的暗物质候选者,它从标准模型(SM)中分离出来,并通过接触相互作用湮灭到单子标量ϕ中。单子标量 "j "与标准模型轻子有嗜轻子的相互作用,可能在树级发生轻子衰变,并在环级衰变成一对光子。这项工作的重点是考虑质量低于 10 GeV 的 DM。在施加观测到的遗迹密度之后,在参数空间中发现了一个可行的隐蔽区域。在这个模型中,标量DM和原子电子之间存在一回路相互作用。然后,我们将来自 Xenon10、Xenon1T 和 DarkSide 的现有直接探测边界应用于 DM-电子弹性散射截面。虽然该模型可以解释μ介子的反常磁矩,但我们应用了当前和未来轻子对撞机实验的边界。
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来源期刊
CiteScore
7.60
自引率
5.70%
发文量
105
审稿时长
1 months
期刊介绍: Journal of Physics G: Nuclear and Particle Physics (JPhysG) publishes articles on theoretical and experimental topics in all areas of nuclear and particle physics, including nuclear and particle astrophysics. The journal welcomes submissions from any interface area between these fields. All aspects of fundamental nuclear physics research, including: nuclear forces and few-body systems; nuclear structure and nuclear reactions; rare decays and fundamental symmetries; hadronic physics, lattice QCD; heavy-ion physics; hot and dense matter, QCD phase diagram. All aspects of elementary particle physics research, including: high-energy particle physics; neutrino physics; phenomenology and theory; beyond standard model physics; electroweak interactions; fundamental symmetries. All aspects of nuclear and particle astrophysics including: nuclear physics of stars and stellar explosions; nucleosynthesis; nuclear equation of state; astrophysical neutrino physics; cosmic rays; dark matter. JPhysG publishes a variety of article types for the community. As well as high-quality research papers, this includes our prestigious topical review series, focus issues, and the rapid publication of letters.
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