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Shielding of a direct detection experiment and implications for the DAMA annual modulation signal

机译:直接检测实验的屏蔽及其对DAMA年度调制信号的影响

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Previous work has argued that, in the framework of plasma dark matter models, the DAMA annual modulation signal can be consistently explained with electron recoils. In the specific case of mirror dark matter, that explanation requires an effective low velocity cutoff,vc?30,000km/s, for the halo mirror electron distribution at the detector. We show here that this cutoff can result from collisional shielding of the detector from the halo wind due to Earth-bound dark matter. We also show that shielding effects can reconcile the kinetic mixing parameter value inferred from direct detection experiments with the value favoured from small scale structure considerations,?≈2×10?10.
机译:先前的工作认为,在等离子体暗物质模型的框架中,DAMA年度调制信号可以用电子反冲来一致地解释。对于镜面暗物质的特定情况,该解释要求有效的低速截止,vc≥30,000km/ s,以使检测器上的晕镜电子分布。我们在这里表明,这种截止可能是由于探测器受到地球束缚的暗物质的碰撞而对光环风的碰撞屏蔽所致。我们还表明,屏蔽效应可以使直接检测实验得出的动力学混合参数值与小规模结构考虑的有利值?≈2×101010。

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