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Attenuation measurements of vacuum ultraviolet light in liquid argon revisited

机译:再次探讨液氩中真空紫外光的衰减测量

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摘要

The attenuation of vacuum ultraviolet light in liquid argon in the context of its application in large liquid noble gas detectors has been studied. Compared to a previous publication several technical issues concerning transmission measurements in general are addressed and several systematic effects were quantitatively measured. Wavelength-resolved transmission measurements have been performed from the vacuum ultraviolet to the near-infrared region. On the current level of sensitivity with a length of the optical path of 11.6 cm, no xenon-related absorption effects could be observed, and pure liquid argon is fully transparent down to the short wavelength cut-off of the experimental setup at 118 nm. A lower limit for the attenuation length of pure liquid argon for its own scintillation light has been estimated to be 1.10 m based on a very conservative approach.
机译:研究了液态氩中真空紫外线在大型液态稀有气体检测器中的衰减情况。与以前的出版物相比,通常解决了几个与传输测量有关的技术问题,并定量地测量了一些系统效果。已经从真空紫外线到近红外区域进行了波长分辨的透射测量。在光程为11.6厘米的当前灵敏度水平上,未观察到氙相关的吸收效应,并且纯液体氩气直到实验装置在118 nm处的短波长截止时都是完全透明的。基于非常保守的方法,纯液体氩气自身闪烁光的衰减长度的下限估计为1.10 m。

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