论文标题

液体氩闪烁对电子后坐力的响应在高光收益单相检测器中,$ 2.8 $ - $ 1275〜 {\ rm kev} $

Liquid argon scintillation response to electronic recoils between $2.8$--$1275~{\rm keV}$ in a high light yield single-phase detector

论文作者

Kimura, M., Aoyama, K., Tanaka, M., Yorita, K.

论文摘要

我们测量了Null Electric Field的液体氩气闪烁响应对电子后坐力的$ 2.82 $至$ 1274.6〜 {\ rm kev} $。此测量中使用的具有较大光学覆盖范围的单相检测器产生$ 12.8 \ pm 0.3〜(11.2 \ pm 0.3)只有一个高斯术语)。 It is exposed to a variety of calibration sources such as $^{22}{\rm Na}$ and $^{241}{\rm Am}$ $γ$-ray emitters, and a $^{252}{\rm Cf}$ fast neutron emitter that induces quasimonoenergetic $γ$ rays through a $(n, n'γ)$ reaction polytetrafluoroethylene中的$^{19} {\ rm f} $。此外,检测器的高光检测效率还可以识别$ 2.82 $ - $ {\ rm kev} $ peep $^{37} {\ rm ar} $,这是一种大气中的宇宙同位素。观察到的检测器的光产率和能量解析是通过全吸附峰获得的。我们发现,在能源范围内的闪烁收益率上最多$ 25 \%$偏移,$ 3 \%的能源分辨率的$ 511.0 $ - $ - $ {\ rm kev} $ line。带有常数参数$ς= 0.033 ^{+0.012} _ { - 0.008} $的Thomas-Imel Box模型可解释结果。对于液体氩气,这是对能量依赖性闪烁的第一个测量值,可降低到Null场的几美元{\ rm kev} $,并提供了用于调整用于物理实验的Argon响应模型的基本输入。

We measure the liquid argon scintillation response to electronic recoils in the energy range of $2.82$ to $1274.6~{\rm keV}$ at null electric field. The single-phase detector with a large optical coverage used in this measurement yields $12.8 \pm 0.3 ~ (11.2 \pm 0.3)~{\rm photoelectron/keV}$ for $511.0$-${\rm keV}$ $γ$-ray events based on a photomultiplier tube single photoelectron response modeling with a Gaussian plus an additional exponential term (with only a Gaussian term). It is exposed to a variety of calibration sources such as $^{22}{\rm Na}$ and $^{241}{\rm Am}$ $γ$-ray emitters, and a $^{252}{\rm Cf}$ fast neutron emitter that induces quasimonoenergetic $γ$ rays through a $(n, n'γ)$ reaction with $^{19}{\rm F}$ in polytetrafluoroethylene. In addition, the high light detection efficiency of the detector enables identification of the $2.82$-${\rm keV}$ peak of $^{37}{\rm Ar}$, a cosmogenic isotope in atmospheric argon. The observed light yield and energy resolution of the detector are obtained by the full-absorption peaks. We find up to approximately $25\%$ shift in the scintillation yield across the energy range and $3\%$ of the energy resolution for the $511.0$-${\rm keV}$ line. The Thomas-Imel box model with its constant parameter $ς=0.033 ^{+0.012} _{-0.008}$ is found to explain the result. For liquid argon, this is the first measurement on the energy-dependent scintillation yield down to a few ${\rm keV}$ at null field and provides essential inputs for tuning the argon response model to be used for physics experiments.

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