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Ultrasensitive detection method for primordial nuclides in copper with Accelerator Mass Spectrometry

机译:加速器质谱法对铜中原始核素的超灵敏检测方法

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摘要

The sensitivity of rare event physics experiments like neutrino or direct dark matter detection crucially depends on the background level. A significant background contribution originates from the primordial actinides thorium (Th) and uranium (U) and the progenies of their decay chains. The applicability of ultra-sensitive Accelerator Mass Spectrometry (AMS) for the direct detection of Th and U impurities in three copper samples is evaluated. Although AMS has been proven to reach outstanding sensitivities for long-lived isotopes, this technique has only very rarely been used to detect ultra low concentrations of primordial actinides. Here it is utilized for the first time to detect primordial Th and U in ultra pure copper serving as shielding material in low level detectors. The lowest concentrations achieved were (1.5±0.6) 10~(-11)g/g for Th and (8±4) · 10~(-14)g/g for U which corresponds to (59 ±24) and (1.0 ± 0.5) μBq/kg, respectively.
机译:中微子或直接暗物质检测等罕见事件物理实验的灵敏度主要取决于背景水平。原始的Th系元素th(Th)和铀(U)及其衰变链的后代产生了重要的背景贡献。评估了超灵敏加速器质谱(AMS)用于直接检测三个铜样品中的Th和U杂质的适用性。尽管已证明AMS对长寿命同位素具有出色的灵敏度,但该技术很少用于检测超低浓度的原始act系元素。在这里,它被首次用于检测超纯铜中的原始Th和U,用作低水平检测器中的屏蔽材料。 Th的最低浓度为(1.5±0.6)10〜(-11)g / g,U的为(8±4)·10〜(-14)g / g,对应于(59±24)和(1.0分别为±0.5)μBq/ kg。

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