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首页> 外文期刊>IEEE Transactions on Nuclear Science >A cluster finding trigger processor for a high energy physics experiment searching for new source of CP violation
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A cluster finding trigger processor for a high energy physics experiment searching for new source of CP violation

机译:用于高能物理实验的集群发现触发处理器,用于寻找违反CP的新来源

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A trigger processor was designed, built, and used in a high-energy physics experiment which was designed to search for a second source of charge-conjugate-parity (CP) violation. An 804-element lead-glass array measured the energies and positions of the final state electromagnetic showers, called clusters. A cluster is defined as an island of connected glass blocks each with more than 1 GeV of energy deposited. The processor selected four clusters events which constituted less than 10% of the total. The trigger contributed negligible deadtime to the data acquisition system. Erasable programmable logic devices were used extensively to search in parallel for the clusters. A typical event took about 30 mu s to be processed the reduction in trigger rate by more than one of magnitude resulted in an experiment that has the highest reported statistics and sensitivity for the measurement of the CP violation parameter epsilon "/ epsilon .
机译:设计,构建了触发处理器,并将其用于高能物理实验中,该实验旨在搜索违反电荷共轭奇偶校验(CP)的第二个来源。 804个元素的铅玻璃阵列测量了称为簇的最终状态电磁辐射的能量和位置。簇定义为连接的玻璃块的孤岛,每个玻璃块具有超过1 GeV的能量沉积。处理器选择了四个集群事件,这些事件少于总数的10%。触发器对数据采集系统的死区时间可忽略不计。可擦除可编程逻辑设备被广泛用于并行搜索簇。一个典型的事件需要大约30毫秒的时间来处理,触发率的降低幅度超过一个数量级,导致一项实验具有最高的报告统计数据和对CP违反参数“ epsilon” / epsilon的测量的灵敏度。

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