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Novel methods for measuring the optical parameters of the water Cherenkov detector

机译:测量Cherenkov水探测器光学参数的新方法

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摘要

In this paper, novel methods are presented to measure the optical properties of the cylindrical water Cherenkov detector with high-reflectivity and diffuse reflection dominated Tyvek material as the inner surface. The mean transmission distance of photons between each reflection in the cylindrical water Cherenkov detector (the mean step length), is constant when there is a sufficient number of photons with random directions in the tank. The time distribution of the photons collected by the photomultiplier tube (PMT) in the water Cherenkov detector is approximately exponential, and the decay factor of the time distribution is determined by the absorption length of photons in the water, the reflectivity of the inner Tyvek surface, the mean step length of photons reflected in the tank, and the ratio of reflective Tyvek area to the total inner surface area. By considering the principles of photon propagation in the water Cherenkov detector, we developed novel methods to measure the water absorption length, Tyvek reflectivity, and mean step length of photons in the tank. The water absorption length and Tyvek reflectivity can be measured simultaneously by changing the height of the water, while the step length and Tyvek reflectivity in air can be measured simultaneously by changing the area of Tyvek, and the mean step length of photons can also be measured even all other parameters unknown. The proposed novel methods are supported by the deduction of formulae and verified by GEANT4 simulations and the prototype experiment.
机译:本文提出了新颖的方法来测量以高反射率和以漫反射为主的特卫强材料为内表面的圆柱形水切伦科夫探测器的光学性能。当水箱中有足够数量的具有随机方向的光子时,圆柱水Cherenkov检测器中每次反射之间光子的平均传输距离(平均步长)是恒定的。切伦科夫水探测器中光电倍增管(PMT)收集的光子的时间分布是近似指数的,时间分布的衰减因子取决于水中光子的吸收长度,特卫强内表面的反射率,在槽中反射的光子的平均步长以及反射的特卫强面积与总内表面积的比值。考虑到光子在Cherenkov水探测器中传播的原理,我们开发了新颖的方法来测量水吸收长度,特卫强反射率和水箱中光子的平均步长。可以通过改变水的高度同时测量吸水长度和特卫强反射率,而通过改变特卫强的面积可以同时测量空气中的步长和特卫强反射率,还可以测量光子的平均步长甚至所有其他参数都未知。所推导的新方法得到了公式推导的支持,并通过GEANT4仿真和原型实验进行了验证。

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