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Radiation background simulation and verification at the LHC: examples from the ATLAS experiment and its upgrades.

机译:LHC的辐射本底模拟和验证:来自ATLAS实验及其升级的示例。

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摘要

The high collision rates at the new energy regime of the LHC gives rise to unprecedented radiation environments, especially in the inner regions of the experiments. High fidelity codes such as FLUKA and GEANT4 are necessary for simulating the complex radiation environments in detail. The results are used for predicting detector system behaviour and performance over the lifetime of the project. In this paper the Monte Carlo tools used to simulate the radiation backgrounds are discussed and examples of the predictions in the ATLAS inner detector regions are shown. Also presented are the results of verification studies in which the fluence and dose predictions are compared with measurements using recent LHC data. It is shown that the level of agreement has exceeded expectations, with differences typically less than 30%, and always smaller than a factor of two. Finally, the radiation background situation for vertex detectors at the HL-LHC is discussed, as well as a parameterisation of the fluences as a function of centre of mass energy.
机译:在大型强子对撞机的新能源体制下,高碰撞率带来了前所未有的辐射环境,尤其是在实验内部。要详细模拟复杂的辐射环境,必须使用诸如FLUKA和GEANT4之类的高保真度代码。结果可用于预测项目整个生命周期内的探测器系统行为和性能。在本文中,讨论了用于模拟辐射背景的蒙特卡洛工具,并显示了ATLAS内部探测器区域中的预测示例。还介绍了验证研究的结果,其中将通量和剂量预测与使用最新LHC数据的测量结果进行了比较。结果表明,协议水平超出了预期,差异通常小于30%,并且始终小于两倍。最后,讨论了HL-LHC处顶点检测器的辐射背景情况,以及作为质量能中心的能量密度的参数化。

著录项

  • 作者

    Dawson, I;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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