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Influence of channel configuration on bandwidth of cadmium zinc telluride detector with a cross-strip pattern

机译:通道配置对碲化镉锌碲化物检测器带宽的影响

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The detector readout bandwidth is of paramount importance to achieve a high count rate and thus a high sensitivity. For detectors with the number of readout channels larger than that of the application-specific integrated circuit (ASIC), multiple ASICs are required. In systems with such a readout scheme, it is important to consider the load balance to achieve the highest count rate. In this work, a Monte Carlo simulation was performed to investigate the bandwidths of different load balancing configurations between two ASICs in a cross strip cadmium zinc telluride detector. It is found that for anode strips, allocating each ASIC to half of the detector area provides a higher bandwidth when compared to allocating ASIC channels to alternate anode channels. Cathodes that are closer to the field of view will trigger more often and require a more complex load balancing scheme. Charge sharing and scattering play a role in the different bandwidths, and the bandwidth of the half-half configuration is 2.82% higher than that of the alternate configuration.
机译:检测器读出带宽是至关重要的,以实现高计数,从而高度灵敏度。对于具有大于应用专用集成电路(ASIC)的读出通道数量的探测器,需要多个ASIC。在具有这种读出方案的系统中,重要的是考虑负载余额以实现最高计数率。在这项工作中,进行了一个蒙特卡罗模拟,以研究十字条镉碲化族检测器中的两个ASIC之间的不同负载平衡配置的带宽。发现,对于阳极条,与分配ASIC信道相比,将每个ASIC到检测器区域的一半提供更高的带宽,其提供更高的带宽。更靠近视野的阴极将更频繁地触发并需要更复杂的负载平衡方案。充电共享和散射在不同的带宽中发挥作用,半半配置的带宽比备用配置高2.82%。

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