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Accurate timing of gamma rays with high-rate Resistive Plate Chambers

机译:高速电阻板腔可精确定时伽玛射线

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摘要

The counting rate capability of RPCs is strongly conditioned by the availability of suitable resistive materials for the electrodes. For time-of-flight measurements in heavy-ion high-energy physics, the extension of the counting rate capabilities achievable with glass electrodes, around 2 kHz/cm~2, to much higher values is of fundamental importance. To address this issue we developed single-gap tRPCs with electrodes made from metal and from a commercially available ceramic material free of charge-depletion effects. Tests performed with 511 keV photons yielded a time resolution around 90 ps σ. Neither the time resolution nor the efficiency have been affected by background rates of up to 20 kHz/cm~2 produced with photons from an X-ray generator. The present result establishes the practical feasibility of accurate timing measurements with RPCs at rates up to 20 kHz/cm~2, while keeping a time resolution below 100 ps σ.
机译:RPC的计数率能力在很大程度上取决于是否有适合电极的电阻材料。对于重离子高能物理中的飞行时间测量,将玻璃电极可实现的计数率能力(大约2 kHz / cm〜2)扩展到更高的值至关重要。为了解决这个问题,我们开发了单间隙tRPC,其电极由金属和无电荷耗尽效应的市售陶瓷材料制成。用511 keV光子执行的测试产生的时间分辨率约为90 psσ。 X射线发生器产生的光子产生的高达20 kHz / cm〜2的本底速率既不影响时间分辨率,也不影响效率。目前的结果确立了使用RPC进行精确定时测量的实际可行性,速率高达20 kHz / cm〜2,同时将时间分辨率保持在100 psσ以下。

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