论文标题
简化的快速检测器模拟5
Simplified fast detector simulation in MadAnalysis 5
论文作者
论文摘要
我们在Madanalysis 5平台中引入了新的简化快速检测器模拟器。该程序的类似Python的解释器已通过新命令增强,允许通过涂抹和效率功能进行检测器参数化。在运行时间内,关联的C ++代码将自动生成并执行以产生重建级别的事件。此外,我们已经扩展了Madanalysis 5重铸造基础架构以支持我们的检测器模拟器,并提供了预定义的LHC检测器构型。我们已经将获得的预测与通过使用Delphes 3软件所产生的方法进行了比较,包括标准模型过程和一些新的物理信号。结果通常同意约10%或更高的水平,这是由遵循的不同策略所产生的预测最大差异,这些策略被模拟了特定的检测器效应。 Madanalysis 5配备了这些新功能,现在提供了一种新的用户友好方式,可以在分析对撞机事件,检测器的模拟以及分析都通过一组直观的Python命令或直接在平台的C ++内部处理。
We introduce a new simplified fast detector simulator in the MadAnalysis 5 platform. The Python-like interpreter of the programme has been augmented by new commands allowing for a detector parametrisation through smearing and efficiency functions. On run time, an associated C++ code is automatically generated and executed to produce reconstructed-level events. In addition, we have extended the MadAnalysis 5 recasting infrastructure to support our detector emulator, and we provide predefined LHC detector configurations. We have compared predictions obtained with our approach to those resulting from the usage of the Delphes 3 software, both for Standard Model processes and a few new physics signals. Results generally agree to a level of about 10% or better, the largest differences in the predictions stemming from the different strategies that are followed to model specific detector effects. Equipped with these new functionalities, MadAnalysis 5 now offers a new user-friendly way to include detector effects when analysing collider events, the simulation of the detector and the analysis being both handled either through a set of intuitive Python commands or directly within the C++ core of the platform.