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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Beam-induced space-charge effects in time projection chambers in low-energy nuclear physics experiments
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Beam-induced space-charge effects in time projection chambers in low-energy nuclear physics experiments

机译:低能核物理实验中时间投影室内的束诱导空间电荷效应

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Tracking capabilities in Time Projection Chambers (TPCs) are strongly dictated by the homogeneity of the drift field. Ion back-flow in various gas detectors, mainly induced by the secondary ionization processes during amplification, has long been known as a source of drift field distortion. Here, we report on beam-induced space-charge effects from the primary ionization process in the drift region in low-energy nuclear physics experiment with Active Target Time Projection Chamber (AT-TPC). A qualitative explanation of the observed effects is provided using detailed electron transport simulations. As ion mobility is a crucial factor in the space-charge effects, the need for a careful optimization of gas properties is highlighted. The impact of track distortion on tracking algorithm performance is also discussed.
机译:时间投影室(TPC)中的跟踪功能在很大程度上取决于漂移场的均匀性。长期以来,各种气体检测器中的离子回流主要是由次级电离过程引起的,它一直被认为是漂移场失真的源头。在这里,我们用主动目标时间投影室(AT-TPC)进行的低能核物理实验中的漂移区中的主要电离过程中的束诱导的空间电荷效应报告。使用详细的电子传输模拟可对观察到的效果进行定性解释。由于离子迁移率是影响空间电荷效应的关键因素,因此需要仔细优化气体特性。还讨论了跟踪失真对跟踪算法性能的影响。

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