首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A photomultiplier tube test stand and on-site measurements to characterise the performance of Photonis XP3062 photomultiplier tubes at increased background light conditions and lower gain
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A photomultiplier tube test stand and on-site measurements to characterise the performance of Photonis XP3062 photomultiplier tubes at increased background light conditions and lower gain

机译:一个光电倍增管测试台和现场测量,以表征在增加的背景光条件下和较低增益下Photonis XP3062光电倍增管的性能

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摘要

Photomultiplier tubes (PMTs) are widely used in astroparticle physics experiments to detect light flashes (e.g. fluorescence or Cherenkov light) from extensive air showers (EASs) initiated by statistically rare very high energy cosmic particles when travelling through the atmosphere. Their high amplification factor (gain) allows the detection of very low photon fluxes down to single photons. At the same time this sensitivity causes the gain and signal-to-noise ratio to decrease with collected charge over the lifetime of the PMT (referred to as "ageing"). To avoid fast ageing, many experiments limit the PMT operation to reasonably low night sky background (NSB) conditions. However, in order to collect more event statistics at the highest energies, it is desirable to extend the measurement cycle into (part of) nights with higher NSB levels. In case the signal-to-noise ratio remains large enough in the subsequent reconstruction of the EAS events, lowering the PMT gain in such conditions can be an option to avoid faster ageing. In this paper, performance studies under high NSB with Photonis XP3062 PMTs, as used in the fluorescence detector of the Pierre Auger Observatory, are presented. The results suggest that lowering the PMT gain by a factor of 10 while increasing the NSB level by a similar factor does not significantly affect the PMT performance and ageing behaviour so that detection and offline reconstruction of EASs are still possible. Adjusting the PMT gain according to a changing NSB level throughout a night has been shown to be possible and it follows a predictable behaviour. This allows to extend the measurement cycles of experiments, based on PMTs of type Photonis XP3062 or comparable and exposed to the NSB, to enhance the sensitivity especially at the highest energies where events are very rare.
机译:光电倍增管(PMT)在天体物理学实验中被广泛使用,以检测从大量空气喷淋(EAS)发出的闪光(例如荧光或切伦科夫光),这些喷淋是由统计上稀有的非常高能的宇宙粒子在穿越大气时引发的。它们的高放大倍数(增益)允许检测低至单个光子的光子通量。同时,这种灵敏度会导致增益和信噪比在PMT的整个使用期内随收集的电荷而降低(称为“老化”)。为了避免快速老化,许多实验将PMT操作限制在合理的低夜空背景(NSB)条件下。但是,为了在最高能量下收集更多事件统计信息,需要将测量周期扩展到NSB级别较高的夜晚(部分)。如果在随后的EAS事件重构中信噪比仍然足够大,则在这种情况下降低PMT增益可以避免快速老化。本文介绍了在皮埃尔·俄格天文台的荧光探测器中使用Photonis XP3062 PMT在高NSB下的性能研究。结果表明,将PMT增益降低10倍,而将NSB水平提高类似倍数,则不会显着影响PMT性能和老化行为,因此仍然可以进行EAS的检测和离线重建。事实证明,可以根据整个晚上的NSB水平变化来调整PMT增益,并且遵循可预测的行为。这可以延长基于Photonis XP3062型或类似产品并暴露于NSB的PMT的实验的测量周期,从而提高灵敏度,尤其是在事件很少发生的最高能量下。

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