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Dark Coulomb binding of heavy neutrinos of fourth family

机译:第四族重中微子的暗库仑结合

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摘要

Direct dark matter searches put severe constraints on the weakly interacting massive particles (WIMPs). These constraints cause serious troubles for the model of stable neutrino of fourth generation with mass around 50 GeV. Though the calculations of primordial abundance of these particles make them in the charge symmetric case a sparse subdominant component of the modern dark matter, their presence in the universe would exceed the current upper limits by several orders of the magnitude. However, if quarks and leptons of fourth generation possess their own Coulomb-like y-interaction, recombination of pairs of heavy neutrinos and antineutrinos and their annihilation in the "neutrinium" atoms can play important role in their cosmological evolution, reducing their modern abundance far below the experimental upper limits. The model of stable fourth generation assumes that the dominant part of dark matter is explained by excessive (U) over bar antiquarks, forming ((U) over bar(U) over bar(U) over bar)(--) charged clusters, bound with primordial helium in nuclear-interacting O-helium (OHe) dark atoms. The y charge conservation implies generation of the same excess of fourth generation neutrinos, potentially dangerous WIMP component of this scenario. We show that due to y-interaction recombination of fourth neutrinos with OHe hides these WIMPs from direct WIMP searches, leaving the negligible fraction of free neutrinos, what makes their existence compatible with the experimental constraints.
机译:直接暗物质搜索对弱相互作用的大颗粒(WIMP)施加了严格的约束。这些限制给质量约为50 GeV的第四代稳定中微子模型带来了严重麻烦。尽管这些粒子的原始丰度计算使它们在电荷对称的情况下成为现代暗物质的稀疏次要成分,但它们在宇宙中的存在将超出当前上限几个数量级。但是,如果第四代夸克和轻子具有自己的库仑样y相互作用,则成对的重中微子和反中微子的重组以及它们在“中微子”原子中的an灭可在它们的宇宙学演化中发挥重要作用,从而大大降低了它们的现代丰度。低于实验上限。稳定的第四代模型假设暗物质的主要部分是由棒反夸克上的过量(U)解释,形成了((U)超过bar(U)超过bar(U)超过bar)(-)带电簇,在核相互作用的O氦(OHe)暗原子中与原始氦结合。 y电荷守恒意味着将产生同样过量的第四代中微子,这是该场景中潜在的危险WIMP组件。我们显示,由于第四中微子与OHe的y相互作用重组,使这些WIMP从直接WIMP搜索中隐藏起来,而游离中微子的分数可忽略不计,这使得它们的存在与实验约束兼容。

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