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Bolometric calibration of a superfluid $^3$He detector for Dark Matter search: direct measurement of the scintillated energy fraction for neutron, electron and muon events

机译:用于暗物质搜索的超流体$ ^ 3 $ He检测器的计量校准:直接测量中子,电子和μ子事件的闪烁能量分数

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摘要

We report on the calibration of a superfluid $^3$He bolometer developed for the search of non-baryonic Dark Matter. Precise thermometry is achieved by the direct measurement of thermal excitations using Vibrating Wire Resonators (VWRs). The heating pulses for calibration were produced by the direct quantum process of quasiparticle generation by other VWRs present. The bolometric calibration factor is analyzed as a function of temperature and excitation level of the sensing VWR. The calibration is compared to bolometric measurements of the nuclear neutron capture reaction and heat depositions by cosmic muons and low energy electrons. The comparison allows a quantitative estimation of the ultra-violet scintillation rate of irradiated helium, demonstrating the possibility of efficient electron recoil event rejection.
机译:我们报告了为研究非重流暗物质而开发的超流体$ ^ 3 $ He热辐射计的校准情况。通过使用振弦谐振器(VWR)直接测量热激励,可以实现精确的测温。用于校准的加热脉冲是由存在的其他VWR通过准粒子生成的直接量子过程产生的。辐射热校准因子根据温度和感测VWR的激励水平进行分析。将该校准与通过核子中子俘获反应和通过宇宙介子和低能电子进行的热沉积的辐射热测量进行比较。通过比较,可以对辐照氦气的紫外线闪烁速率进行定量估计,这证明了有效的电子反冲事件抑制的可能性。

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