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Gadolinium-loaded liquid scintillator for high-precision measurements of antineutrino oscillations and the mixing angle, θ_(13)

机译:装载d的液体闪烁体,用于高精度测量中微子振荡和混合角θ_(13)

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摘要

The use of multiple, identical liquid scintillator (LS) detectors at distances between 0.1 and 2 km from a nuclear reactor has the potential to detect antineutrino oscillations and to measure the value of the unknown neutrino-mixing angle θ_(13). The nuclear reaction of interest in the LS is the inverse β-decay reaction on protons, with the coincidence tag between the emitted prompt positron and the delayed neutron-capture providing a clear signature of the antineutrino capture. The neutron-capture signal is greatly enhanced by loading gadolinium into the LS, because of the large (n, γ) cross-sections of the Gd isotopes (49,000 barns for natural abundance Gd), and the ~8 MeV of emitted γ-rays. We have developed procedures at BNL to synthesize high-quality Gd-loaded LS (Gd-LS) in a simplified, consistent, and reproducible way, using the method of pH-controlled, solvent-solvent extraction. This Gd-LS has long attenuation length ( > 15 m), high-light output (~90% of pseudocumene), and long-term stability ( > 1.5 years to date). The preparation and characteristics of this Gd-LS are discussed in this paper.
机译:在距核反应堆0.1至2 km的距离处使用多个相同的液体闪烁体(LS)检测器有可能检测反中微子振荡并测量未知中微子混合角θ_(13)的值。 LS中感兴趣的核反应是质子的反β衰变反应,发射的正电子与延迟中子捕获之间的重合标记提供了抗中微子捕获的清晰特征。由于the同位素的横截面大(n,γ)(自然丰度Gd为49,000谷仓),并且发射的γ射线约为〜8 MeV,因此通过将g加载到LS中可以大大增强中子捕获信号。我们已经在BNL开发了程序,可以使用pH控制,溶剂-溶剂萃取的方法,以简化,一致且可重现的方式合成高质量的Gd负载LS(Gd-LS)。该Gd-LS具有较长的衰减长度(> 15 m),高光输出(约90%的伪异丙基苯)和长期的稳定性(> 1.5年至今)。本文讨论了该Gd-LS的制备和特性。

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