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首页> 外文期刊>The journal of high energy physics >Scope of self-interacting thermal WIMPs in a minimal U(1) D extension and its future prospects
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Scope of self-interacting thermal WIMPs in a minimal U(1) D extension and its future prospects

机译:在最小的U(1)<下标> <重点类型=“斜体”> D 扩展及其未来前景中的自相互作用的热WIMP的范围

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A bstract In this work we have considered a minimal extension of Standard Model by a local U(1) gauge group in order to accommodate a stable (fermionic) Dark Matter (DM) candidate. We have focussed on parameter regions where DM possesses adequate self-interaction, owing to the presence of a light scalar mediator (the dark Higgs), alleviating some of the tensions in the small-scale structures. We have studied the scenario in the light of a variety of data, mostly from dark matter direct searches, collider searches and flavor physics experiments, with an attempt to constrain the interactions of the standard model (SM) particles with the ones in the Dark Sector (DS). Assuming a small gauge kinetic mixing parameter, we find that for rather heavy DM the most stringent bound on the mixing angle of the Dark Higgs with the SM Higgs boson comes from dark matter direct detection experiments, while for lighter DM, LHC constraints become more relevant. Note that, due to the presence of very light mediators, the effective operator approach to the direct detection is inapplicable here and these constraints have been re-evaluated for our scenario. In addition, we find that the smallness of the relevant portal couplings, as dictated by data, critically suppress the viability of DM production by the standard “freeze-out” mechanism in such simplified scenarios. In particular, the viable DM masses are ? O 2 $$ lesssim mathcal{O}(2) $$ GeV i.e. in the regions where direct detection limits tend to become weak. For heavier DM with large self-interactions, we hence conclude that non-thermal production mechanisms are favored. Lastly, future collider reach of such a simplified scenario has also been studied in detail.
机译:这项工作中的一个Bstract我们已经考虑了本地U(1)个仪表组的标准模型的最小延伸,以适应稳定(Fermionic)暗物质(DM)候选人。由于存在轻标量介质(黑色的HIGG),我们专注于DM具有足够的自相互作用的参数区域。减轻了小规模结构中的一些紧张局势。我们根据各种数据研究了这种情况,主要来自暗物质直接搜索,撞机搜索和风味物理实验,试图将标准模型(SM)粒子与黑暗部门中的颗粒的相互作用限制(DS)。假设一个小规模动力学混合参数,我们发现,对于相当重的DM,与SM Higgs Boson的黑暗HIGGS的混合角度上最严格的绑定来自暗物质直接检测实验,而对于较轻的DM,LHC约束变得更加相关。注意,由于存在非常光调解器,直接检测的有效操作员方法在这里不适用,并且已经为我们的场景重新评估这些约束。此外,我们发现相关门户联轴器的小,如数据所示,在这种简化的情况下,通过标准的“冻结”机制来抑制DM生产的可行性。特别是,可行的DM群众是? O 2 $$ lesssim mathcal {o}(2)$$ gev i.e.在直接检测限度趋于变弱的地区。对于具有大的自相互作用的较重DM,因此得出结论,非热生产机制受到青睐。最后,还详细研究了这种简化方案的未来碰撞机局。

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