论文标题

使用中子捕获在100 eV量表上校准核后坐力

Calibration of nuclear recoils at the 100 eV scale using neutron capture

论文作者

Thulliez, L., Lhuillier, D., Cappella, F., Casali, N., Cerulli, R., Chalil, A., Chebboubi, A., Dumonteil, E., Erhart, A., Giuliani, A., Gunsing, F., Jericha, E., Kaznacheeva, M., Kinast, A., Langenkämper, A., Lasserre, T., Letourneau, A., Litaize, O., de Marcillac, P., Marnieros, S., Materna, T., Mauri, B., Mazzucato, E., Nones, C., Ortmann, T., Pattavina, L., Poda, D. V., Rogly, R., Schermer, N., Serot, O., Soum, G., Stodolsky, L., Strauss, R., Vignati, M., Vivier, M., Wagner, V., Wex, A.

论文摘要

用于研究相干弹性中微子核散射和寻找轻暗物质的低阈值检测器的发展需要低能校准的方法。我们建议这可以由热中子捕获后$γ$排放产生的核后坐力提供。特别是,几个MEV级单$γ$过渡会在100 eV范围内引起定义明确的核电后峰值。使用FIFRELIN代码,可以高准确地预测$γ$ -Cascades的完整方案,以确定校准峰以下核后坐力的连续背景。我们提出了一个全面的实验概念,用于在研究反应堆上对Cawo $ _4 $和GE低温探测器进行校准。对于cawo $ _4 $,模拟显示,在低温检测器的光谱中,在背景上应可见两个核后坐力的峰值和160.3 eV。然后,我们讨论相关$γ$的附加标记如何提高该方法的灵敏度,并将其应用扩展到更广泛的能量范围和GE低温检测器。

The development of low-threshold detectors for the study of coherent elastic neutrino-nucleus scattering and for the search for light dark matter necessitates methods of low-energy calibration. We suggest this can be provided by the nuclear recoils resulting from the $γ$ emission following thermal neutron capture. In particular, several MeV-scale single-$γ$ transitions induce well-defined nuclear recoil peaks in the 100 eV range. Using the FIFRELIN code, complete schemes of $γ$-cascades for various isotopes can be predicted with high accuracy to determine the continuous background of nuclear recoils below the calibration peaks. We present a comprehensive experimental concept for the calibration of CaWO$_4$ and Ge cryogenic detectors at a research reactor. For CaWO$_4$ the simulations show that two nuclear recoil peaks at 112.5 eV and 160.3 eV should be visible above background simply in the spectrum of the cryogenic detector. Then we discuss how the additional tagging for the associated $γ$ increases the sensitivity of the method and extends its application to a wider energy range and to Ge cryogenic detectors.

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