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Dark matter bound state formation in fermionic Z2 DM model with light dark photon and dark Higgs boson

机译:光线Z2 DM模型中的暗物质绑定状态形成,光暗光子和黑暗的HIGGS玻色子

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摘要

Abstract If fermionic dark matter (DM) is stabilized by dark U(1) gauge symmetry that is spontaneously broken into its subgroup Z 2, the particle contents of the model becomes very rich: DM and excited DM, both of them are Majorana fermions, as well as two dark force mediators, dark photon and dark Higgs boson are naturally present due to the underlying dark gauge symmetry. In this paper, we study the DM bound state formation processes within this scenario, assuming both dark photon and dark Higgs are light mediators and including the effects of excited DM. The Goldstone boson contributions to the potential matrix in the Schrödinger equations are found to be important. The emissions of a longitudinal vector boson (or somehow equivalently a Goldstone boson) during the DM bound state formations are crucial to induce a significant reannihilation process, reducing the dark matter relic abundance. Most of the stringent constraints for this kind of dark matter considered in the literature are simply evaded.
机译:摘要如果通过暗u(1)尺寸对称稳定的Fermionic暗物质(DM)被自发地破碎的Z 2,模型的颗粒内容变得非常丰富:DM和兴奋的DM,两者都是Majorana Fermions,除了两个黑色力介体,暗光子和黑暗的HIGGS玻色子自然存在由于底层的暗尺对称性。在本文中,我们研究了这种情况下的DM绑定状态形成过程,假设深色光子和暗希格斯是轻介体,包括激发DM的效果。发现了对Schrödinger方程中的潜在矩阵的Goldstone Boson贡献很重要。在DM结合状态形成期间,纵向矢量玻色子(或不知何时何时的镀金)的排放是至关重要的,诱导显着的reannihilation过程,从而减少了暗物质遗物丰富。在文献中考虑这种暗物质的大多数严格约束都被删除了。

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