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引用次数: 0

摘要

BABAR实验的仿真生成代码是基于Geant4工具包的。在一个典型的e/sup +/e/sup -/ -/ spl Upsi/(4s) = B/sup 0/B/sup 0/事件中,利用Geant4工具包提供的衰变、电磁和强子过程,在发生器中产生30到60个轨道,并通过探测器传播。探测器的材料模型非常详细,并且开发了一个特殊的粒子传输模块,以便在不牺牲性能的情况下在传播过程中采样微小的特征。在866 MHz处理器上,这种事件的传播阶段需要3.8 CPU秒。其他BABAR事件类型的执行速度也将给出。根据BABAR和其他实验的数据验证模拟事件正在进行中,蒙特卡罗/数据比较的结果将被展示。还将讨论仿真代码的设计及其鲁棒性、如何使用Geant4工具包,以及为改进数据和蒙特卡罗之间的一致性所做的持续努力。
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The Geant4-based BABAR simulation
The simulation production code for the BABAR experiment is based on the Geant4 toolkit. In a typical e/sup +/e/sup -/ - /spl Upsi/(4s) = B/sup 0/B/sup 0/ event, between 30 and 60 tracks are produced in the generator and propagated through the detector, using decay, electromagnetic and hadronic processes provided by the Geant4 toolkit. The material model of the detector is very detailed and a special particle transportation module was developed so that minute features would be sampled in the propagation without sacrificing performance. The propagation phase for such an event requires 3.8 CPU seconds on an 866 MHz processor. Execution speeds for other BABAR event types will also be presented. Validation of simulated events against data from BABAR and other experiments is ongoing, and the results of Monte Carlo/data comparisons will he shown. A discussion of the design of the simulation code and its robustness, how the Geant4 toolkit is used, and ongoing efforts to improve the agreement between data and Monte Carlo will also be presented.
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