首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Performance prospects for the CMS electromagnetic calorimeter barrel avalanche photodiodes for LHC phase Ⅰ and phase Ⅱ: Radiation hardness and longevity
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Performance prospects for the CMS electromagnetic calorimeter barrel avalanche photodiodes for LHC phase Ⅰ and phase Ⅱ: Radiation hardness and longevity

机译:LHCⅠ期和Ⅱ期的CMS电磁热量计筒雪崩光电二极管的性能前景:辐射硬度和寿命

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The electromagnetic calorimeter of the Compact Muon Solenoid (CMS) experiment at the LHC is a hermetic, fine-grained, homogeneous calorimeter, comprising 75,848 lead tungstate scintillating crystals. Avalanche photodiodes produced by Hamamatsu are used as sensors for the electromagnetic barrel calorimeter. These devices were tested for radiation hardness assuming an integrated luminosity of 500 fb~(-1) which corresponds to a neutron fluence of 2-4 × 10~(13) n/cm~2, depending on the detector location. Beginning in 2022, a new phase of the LHC is foreseen to exploit the full potential of the accelerator, which will deliver 3000 fb~(-1) of integrated luminosity. Irradiation studies up to a fluence of 1.5 × 10~(14) n/cm~2 have been performed to qualify the avalanche photodiodes for radiation hardness. We present measurements of gain, quantum efficiency and noise, and discuss the implications for the CMS electromagnetic barrel calorimeter performance.
机译:大型强子对撞机(LHC)的紧凑型μon螺线管(CMS)实验的电磁量热仪是一种密闭,细粒度,均匀的量热仪,包含75,848钨酸铅闪烁晶体。滨松生产的雪崩光电二极管用作电磁桶热量计的传感器。假设积分光度为500 fb〜(-1)(对应于探测器的位置,对应于2-4×10〜(13)n / cm〜2的中子注量),对这些设备的辐射硬度进行了测试。从2022年开始,预计大型强子对撞机将进入一个新阶段,以充分利用加速器的全部潜能,它将提供3000 fb〜(-1)的综合光度。已经进行了辐射通量高达1.5×10〜(14)n / cm〜2的研究,以使雪崩光电二极管具有辐射硬度。我们介绍了增益,量子效率和噪声的测量,并讨论了CMS电磁桶热量计性能的含义。

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