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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Fluid modeling of resistive plate chambers: impact of transport data on development of streamers and induced signals
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Fluid modeling of resistive plate chambers: impact of transport data on development of streamers and induced signals

机译:电阻板室的流体建模:运输数据对飘带和诱导信号发展的影响

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摘要

We discuss the implementation of transport data in modeling of resistive plate chambers (RPCs), which are used for timing and triggering purposes in many high energy physics experiments. Particularly, we stress the importance of making a distinction between flux and bulk transport data when non-conservative collisions, such as attachment and/or ionization, are present. A 1.5-dimensional fluid model with photoionization is employed to demonstrate how the duality of transport data affects the calculated signals of the ATLAS triggering RPC and ALICE timing RPC used at CERN, and also a timing RPC with high SF6 content. It is shown that in the case of timing RPCs, the difference between the induced charges calculated using flux and bulk transport data can reach several hundred percent at lower operating electric fields. The effects of photoionization and space charge are also discussed.
机译:我们讨论了在许多高能物理实验中用于定时和触发目的的电阻板腔室(RPCS)的运输数据的实施。 特别是,当存在非保守碰撞等诸如附着和/或离子化的诸如附着和/或电离的情况下,强调了磁通和散装传输数据之间的重要性。 使用具有光相的1.5维流体模型来展示传输数据的二元性如何影响触发CERN中使用的RPC和AlICE定时RPC的ATLA的计算信号,以及具有高SF6内容的定时RPC。 结果表明,在定时RPC的情况下,使用磁通量和散装传输数据计算的诱导电荷之间的差异可以在较低的操作电场下达到数百%。 还讨论了光离子电荷和空间电荷的影响。

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