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Time-stamping system for nuclear physics experiments at RIKEN RIBF

机译:RIKEN RIBF的核物理实验时间戳系统

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摘要

A time-stamping system for nuclear physics experiments has been introduced at the RIKEN Radioactive Isotope Beam Factory. Individual trigger signals can be applied for separate data acquisition (DAQ) systems. After the measurements are complete, separately taken data are merged based on the time-stamp information. In a typical experiment, coincidence trigger signals are formed from multiple detectors to take desired events only. The time-stamping system allows the use of minimum bias triggers. Since coincidence conditions are given by software, a variety of physics events can be flexibly identified. The live time for a DAQ system is important when attempting to determine reaction cross-sections. However, the combined live time for separate DAQ systems is not clearly known because it depends not only on the DAQ dead time but also on the coincidence conditions. Using the proposed time-stamping system, alt trigger timings can be acquired, so that the combined live time can be easily determined. The combined live time is also estimated using Monte Carlo simulations, and the results are compared with the directly measured values in order to assess the accuracy of the simulation.
机译:RIKEN放射性同位素束工厂已经引入了用于核物理实验的时间戳系统。可以将单独的触发信号应用于单独的数据采集(DAQ)系统。测量完成后,将根据时间戳信息合并单独获取的数据。在典型的实验中,巧合触发信号由多个检测器形成,仅发生所需的事件。时间戳系统允许使用最小偏置触发器。由于巧合条件是由软件给出的,因此可以灵活地识别各种物理事件。尝试确定反应截面时,DAQ系统的实时时间很重要。但是,不清楚单独的DAQ系统的组合实时时间,因为它不仅取决于DAQ停滞时间,还取决于巧合条件。使用建议的时间戳系统,可以获取所有触发时间,从而可以轻松确定组合的实时时间。还使用蒙特卡洛模拟来估算组合的实时时间,并将结果与​​直接测量的值进行比较,以评估模拟的准确性。

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