暗物质搜索中的中子校准:ANAIS-112案例

Pardo, T., Amaré, J., Apilluelo, J., Cebrián, S., Cintas, D., Coarasa, I., García, E., Martínez, M., Oliván, M. A., Ortigoza, Y., de Solórzano, A. Ortiz, Pellicer, M., Puimedón, J., Salinas, A., Sarsa, M. L., Villar, P.
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引用次数: 0

摘要

ANAIS是一项直接暗物质探测实验,其目的是以一种与模型无关的方式证实或反驳DAMA/LIBRA声称的正年度调制信号。ANAIS-112由112.5 kg的NaI(Tl)闪烁体组成,自2017年8月以来一直在西班牙Canfranc地下实验室采集数据。三年数据分析对应的结果与无调制兼容,与DAMA/LIBRA不兼容。然而,测试这个信号依赖于闪烁猝灭因子(QF)的知识,它测量的是相对于电子沉积的相同能量,核反冲能量转换成光的相对效率。先前对NaI(Tl)中量子场的测量显示出很大的色散。因此,为了更好地理解ANAIS-112探测器对核后坐力的响应,开发了一个特定的中子校准程序。该程序结合了两种不同的方法:一方面,在单能中子束中进行QF测量;另一方面,本文提出的研究旨在通过将ANAIS-112晶体直接暴露于置于铅屏蔽外的低活度$^{252}$Cf源的中子中来评估QF。这些现场中子测量和详细的GEANT4模拟之间的比较将被展示,证实这种方法可以测试不同的QF模型。
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Neutron calibrations in dark matter searches: the ANAIS-112 case
ANAIS is a direct dark matter detection experiment whose goal is to confirm or refute in a model independent way the positive annual modulation signal claimed by DAMA/LIBRA. Consisting of 112.5 kg of NaI(Tl) scintillators, ANAIS-112 is taking data at the Canfranc Underground Laboratory in Spain since August, 2017. Results corresponding to the analysis of three years of data are compatible with the absence of modulation and incompatible with DAMA/LIBRA. However, testing this signal relies on the knowledge of the scintillation quenching factors (QF), which measure the relative efficiency for the conversion into light of the nuclear recoil energy with respect to the same energy deposited by electrons. Previous measurements of the QF in NaI(Tl) show a large dispersion. Consequently, in order to better understand the response of the ANAIS-112 detectors to nuclear recoils, a specific neutron calibration program has been developed. This program combines two different approaches: on the one hand, QF measurements were carried out in a monoenergetic neutron beam; on the other hand, the study presented here aims at the evaluation of the QF by exposing directly the ANAIS-112 crystals to neutrons from low activity $^{252}$Cf sources, placed outside the lead shielding. Comparison between these onsite neutron measurements and detailed GEANT4 simulations will be presented, confirming that this approach allows testing different QF models.
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