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GAMMASPHERE-elimination of ballistic deficit by using a quasi-trapezoidal pulse shaper

机译:使用准梯形脉冲整形器消除弹道缺陷

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Gammasphere uses an spherical array of very large (7.2 cm dia.) germanium detectors and only high-multiplicity events are studied. To achieve a reasonable coincidence rate, the individual detector channels must handle high rates with minimum pile-up losses. Ten microseconds was chosen as the total processing time for a signal which means that the shaped signal peaks in about 4 us. The combination of short pulse shaping and the fluctuating long charge collection times (up to 400 ns) in the detectors exaggerates the energy resolution degradation due to ballistic deficit effects. We describe a method of producing a flat-topped pulse with a simple time-invariant network that satisfies GAMMASPHERE requirements and eliminates ballistic deficit effects.
机译:伽玛球使用非常大(直径7.2厘米)锗探测器的球面阵列,仅研究高多重性事件。为了达到合理的重合率,各个检测器通道必须以最小的堆积损耗处理高速率。选择十微秒作为信号的总处理时间,这意味着整形信号的峰值大约为4 us。短脉冲整形和检测器中波动的长电荷收集时间(最高400 ns)的组合会放大由于弹道缺陷效应而导致的能量分辨率下降。我们描述了一种通过满足GAMMASPHERE要求并消除弹道赤字效应的简单时不变网络来产生平顶脉冲的方法。

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