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首页> 外文期刊>The journal of high energy physics >Absorption of fermionic dark matter by nuclear targets
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Absorption of fermionic dark matter by nuclear targets

机译:核目标吸收Fermionic暗物质

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A bstract Absorption of fermionic dark matter leads to a range of distinct and novel signatures at dark matter direct detection and neutrino experiments. We study the possible signals from fermionic absorption by nuclear targets, which we divide into two classes of four Fermi operators: neutral and charged current. In the neutral current signal, dark matter is absorbed by a target nucleus and a neutrino is emitted. This results in a characteristically different nuclear recoil energy spectrum from that of elastic scattering. The charged current channel leads to induced β decays in isotopes which are stable in vacuum as well as shifts of the kinematic endpoint of β spectra in unstable isotopes. To confirm the possibility of observing these signals in light of other constraints, we introduce UV completions of example higher dimensional operators that lead to fermionic absorption signals and study their phenomenology. Most prominently, dark matter which exhibits fermionic absorption signals is necessarily unstable leading to stringent bounds from indirect detection searches. Nevertheless, we find a large viable parameter space in which dark matter is sufficiently long lived and detectable in current and future experiments.
机译:费米子暗物质引线的bstract吸收到一系列独特和新颖的签名在暗物质直接探测中微子实验。中性和带电电流:我们通过核打击目标,这是我们分成两个类别的四个费米商的研究从费米子吸收可能的信号。在中性线电流信号,暗物质由靶核吸收和中微子被发射。这导致从弹性散射的特征不同的核反冲能量谱。充电电流通道通向诱导β衰变中的同位素,其是在真空稳定以及β的光谱中不稳定同位素的运动端点的偏移。为了证实在其它约束光观察这些信号的可能性,我们引入例如高维算子UV完井铅至费米子吸收信号和研究它们的现象。最突出的是,表现出费米子的吸收信号暗物质是必然不稳定导致的间接检测的搜索范围严格。尽管如此,我们在当前和今后的实验中发现,其中暗物质是足够长住大可行参数空间和检测。

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