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Characterisation of ionisation chambers for a mixed radiation field and investigation of their suitability as radiation monitors for the LHC

机译:用于混合辐射场的电离室的特性及其作为LHC辐射监测器的适用性研究

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摘要

Monitoring of the radiation environment is one of the key tasks in operating a high-energy accelerator such as the Large Hadron Collider (LHC). The radiation fields consist of neutrons, charged hadrons as well as photons and electrons with energy spectra extending from those of thermal neutrons up to several hundreds of GeV. The requirements for measuring the dose equivalent in such a field are different from standard uses and it is thus necessary to investigate the response of monitoring devices thoroughly before the implementation of a monitoring system can be conducted. For the LHC, it is currently foreseen to install argon- and hydrogen-filled high-pressure ionisation chambers as radiation monitors of mixed fields. So far their response to these fields was poorly understood and, therefore, further investigation was necessary to prove that they can serve their function well enough. In this study, ionisation chambers of type IG5 (Centronic Ltd) were characterised by simulating their response functions by means of detailed FLUKA calculations as well as by calibration measurements for photons and neutrons at fixed energies. The latter results were used to obtain a better understanding and validation of the FLUKA simulations. Tests were also conducted at the CERF facility at CERN in order to compare the results with simulations of the response in a mixed radiation field. It is demonstrated that these detectors can be characterised sufficiently enough to serve their function as radiation monitors for the LHC
机译:监测辐射环境是操作高能加速器(例如大型强子对撞机(LHC))的关键任务之一。辐射场由中子,带电的强子以及光子和电子组成,其能谱从热中子的能谱扩展到几百个GeV。在这样的领域中测量剂量当量的要求不同于标准用途,因此有必要在可以实施监视系统之前彻底调查监视设备的响应。对于大型强子对撞机,目前预计将安装充满氩气和氢气的高压电离室,作为混合场的辐射监测器。到目前为止,他们对这些领域的反应知之甚少,因此,有必要进一步调查以证明它们可以充分发挥其作用。在这项研究中,IG5型电离室(Centronic Ltd)的特征是通过详细的FLUKA计算以及在固定能量下对光子和中子的校准测量来模拟其响应函数。后一结果用于更好地理解和验证FLUKA仿真。还在欧洲核子研究中心的CERF设施中进行了测试,以便将结果与混合辐射场中响应的仿真进行比较。证明了这些探测器的特性足以充分发挥其作为LHC辐射监测器的功能

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