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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Helium-Xenon mixtures to improve the topological signature in high pressure gas xenon TPCs
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Helium-Xenon mixtures to improve the topological signature in high pressure gas xenon TPCs

机译:氦氙混合物可改善高压气体氙TPC中的拓扑特征

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Within the framework of xenon-based double beta decay experiments, we propose the possibility to improve the background rejection of an electroluminescent Time Projection Chamber (EL TPC) by reducing the diffusion of the drifting electrons while keeping nearly intact the energy resolution of a pure xenon EL TPC. Based on state-of-the-art microscopic simulations, a substantial addition of helium, around 10 or 15 %, may reduce drastically the transverse diffusion down to 2.5 mm/mfrom the 10.5 mm/mof pure xenon. The longitudinal diffusion remains around 4 mm/m. Light production studies have been performed as well. They show that the relative variation in energy resolution introduced by such a change does not exceed a few percent, which leaves the energy resolution practically unchanged. The technical caveats of using photomultipliers close to an helium atmosphere are also discussed in detail.
机译:在基于氙的双β衰变实验的框架内,我们提出了通过减少漂移电子的扩散同时保持几乎不变的纯氙能量分辨率来改善电致发光定时投影室(EL TPC)的背景抑制的可能性。 EL TPC。根据最新的微观模拟,大量添加的氦气(大约10%或15%)可将横向扩散从10.5 mm / m的纯氙气急剧降低至2.5 mm / m。纵向扩散保持在4mm / m左右。还进行了轻型生产研究。他们表明,由这种变化引起的能量分辨率的相对变化不超过百分之几,这使能量分辨率实际上保持不变。还详细讨论了在接近氦气的环境中使用光电倍增管的技术警告。

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