论文标题

研究纯和甲烷掺杂液体氩气的可见光发射

Study of visible-light emission in pure and methane-doped liquid argon

论文作者

Bondar, A., Borisova, E., Buzulutskov, A., Frolov, E., Nosov, V., Oleynikov, V., Sokolov, A.

论文摘要

在用于暗物质搜索和中微子检测实验的液体氩TPC中,主要闪光灯被用作颗粒散射的及时信号,由于精液发射机制而在真空紫外线(VUV)中强烈产生。另一方面,有迹象表明液体氩气的可见光发射的产生,尽管强度要低得多,但其起源仍然不清楚。紧密相关的问题是掺有甲烷的液体氩气的可见光发射,这是由于这些实验中的中子否决探测器可能使用的兴趣。在这项工作中,我们详细研究了纯液体氩气及其与甲烷的混合物中这种光发射的特性。特别地,对于X射线和α颗粒,纯液体氩气氩中可见光发射的绝对光子产量分别为200和90个光子/MEV。在用甲烷掺杂的液体氩气中,光子产量在甲烷摩尔含量下的数量级显着下降,从0.01到1%不等,然后在将甲烷含量进一步增加到10%时几乎没有变化。

In liquid argon TPCs for dark matter search and neutrino detection experiments, primary scintillation light is used as a prompt signal of particle scattering, being intensively produced in the vacuum ultraviolet (VUV) due to excimer emission mechanism. On the other hand, there were indications on the production of visible-light emission in liquid argon, albeit at a much lower intensity, the origin of which is still not clear. The closely related issue is visible-light emission in liquid argon doped with methane, the interest in which is due to the possible use in neutron veto detectors for those experiments. In this work we study in detail the properties of such light emission in pure liquid argon and its mixtures with methane. In particular, the absolute photon yield of visible-light emission in pure liquid argon was measured to be about 200 and 90 photon/MeV for X-rays and alpha particles respectively. In liquid argon doped with methane the photon yield dropped down significantly, by about an order of magnitude at a methane molar content varying from 0.01 to 1%, and then almost did not change when further increasing the methane content up to 10%.

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