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Upgrade of the Cold Electronics of the ATLAS HEC Calorimeter for sLHC Generic Studies of Radiation Hardness and Temperature Dependence

机译:升级辐射硬度和温度依赖性的SLHC通用研究的阿特拉斯HEC热量表的升级

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The front-end electronics (signal amplification and summation) of the ATLAS Hadronic End-cap Calorimeter (HEC) is operated at the circumference of the HEC calorimeter wheels inside the cryostats in liquid argon (LAr). The present electronics is designed to operate at irradiation levels expected for the LHC. For operation at the sLHC the irradiation levels are expected to be a factor ten higher, therefore a new electronic system might be needed. The technological possibilities have been investigated. For different technologies generic studies at the transistor level different have been carried out to understand the radiation hardness during irradiation up to integrated n fluxes of 2×10~(16) n/cm~2 and the behaviour during cool-down to LAr temperatures. An S-parameter technique has been used to monitor the performances during irradiation and cool-down. In addition, DC measurements before and after irradiation have been compared. Results of these investigations are reported. Conclusions are drawn and the viability is assessed of using technologies for carrying out the design of the new HEC cold electronics for the sLHC.
机译:ATLAS的前端电子(信号放大和求和)在液体氩气(LAR)中的低温恒温器内的HEC热量表车轮的圆周处操作。本电子产品旨在在预期的LHC预期的照射水平下运行。对于SLHC的操作,辐照水平预计将较高,因此可能需要新的电子系统。已经调查了技术可能性。对于不同的技术,在晶体管水平上进行了不同的研究,以便在照射期间的辐射硬度达到2×10〜(16)n / cm〜2的集成N助熔剂,以及在冷却至LAR温度期间的行为。 S参数技术已被用于监测照射和冷却期间的性能。另外,比较了照射前后的直流测量。报告了这些调查的结果。得出结论,并评估生存能力,利用技术进行SLHC开展新的HEC冷电子产品的设计。

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