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Composite scalar dark matter

机译:复合标量暗物质

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A bstract We show that the dark matter (DM) could be a light composite scalar η , emerging from a TeV-scale strongly-coupled sector as a pseudo Nambu-Goldstone boson (pNGB). Such state arises naturally in scenarios where the Higgs is also a composite pNGB, as in O (6) /O (5) models, which are particularly predictive, since the low-energy interactions of η are determined by symmetry considerations. We identify the region of parameters where η has the required DM relic density, satisfying at the same time the constraints from Higgs searches at the LHC, as well as DM direct searches. Compositeness, in addition to justify the lightness of the scalars, can enhance the DM scattering rates and lead to an excellent discovery prospect for the near future. For a Higgs mass m ~( h )???125?GeV and a pNGB characteristic scale f ???1 TeV, we find that the DM mass is either m ~( η )???50–70?GeV, with DM annihilations driven by the Higgs resonance, or in the range 100–500?GeV, where the DM derivative interaction with the Higgs becomes dominant. In the former case the invisible Higgs decay to two DM particles could weaken the LHC Higgs signal.
机译:Bstract我们表明暗物质(DM)可以是光复合标量η,从Tev-Scale强耦合的扇区出现,作为伪Nambu-Goldstone玻色子(PNGB)。这种状态自然地在HIGGS也是复合PNGB的情况下,如在o(6)/ O(5)模型中,其特别预测的模型,因为η的低能量相互作用由对称考虑确定。我们识别η具有所需DM遗物密度的参数区域,同时满足HIGGS在LHC搜索的约束以及DM直接搜索。合成,除了证明标量的亮度,还可以提高DM散射率,并导致不久的未来的出色发现前景。对于HGGS质量m〜(h)??? 125?gev和一个pngb特征尺度f ??? 1 tev,我们发现DM质量是m〜(η)??? 50-70?GEV,与由HIGGS共振驱动的DM湮灭,或者在100-500的范围内,与HGGS的DM衍生物相互作用变得优势。在前一种情况下,看不见的HIGGS衰减到两个DM粒子可以削弱LHC HIGGS信号。

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