论文标题

SIPM辐射硬度的表征用于在Fair,Cern和Nica的强子量环中应用

Characterisation of SiPM radiation hardness for application in hadron calorimeters at FAIR, CERN and NICA

论文作者

Mikhaylov, V., Guber, F., Ivashkin, A., Kugler, A., Kushpil, V., Morozov, S., Svoboda, O., Tlusty, P.

论文摘要

由于对磁场不敏感,低工作电压,低成本,紧凑性和机械耐力,因此硅光电层层(SIPM)是强量量环光量读数的绝佳选择。它们已经在CERN的Na61的弹丸观众检测器(PSD)中成功使用,并将在NICA Heaft-Ion Collision实验的BM@n的公平和前方强子热量表(FHCAL)中很快在CBM的PSD中使用。 SIPM应用的主要问题是由于高中子通量的降解,该实验操作每年最多可达2E11 NEQ/CM2。 Ketek,Zecotek,hamamatsu和Sensl制造商在NPI REZ的Cyclotron上进行了多次辐照测试,具有广泛的中子光谱,并且在5E10-6E12 NEQ/CM2的较宽范围内进行了宽敞的中子谱。所有SIPM的详细表征均基于暗电流对电压,电压和频率的电容的依赖性以及对电压的LED灯的响应。从这些测量值中提取了SIPM的故障电压,淬火电阻,像素电容,增益和信号与噪声比。讨论了这些参数对中子频率及其可变性的依赖性。在2-80 GeV/c质子的光束扫描期间,在横梁扫描期间,PSD量热计模块的性能被简要概述。

Silicon PhotoMultipliers (SiPM) are an excellent choice for the scintillator light readout at hadron calorimeters due to their insensitivity to magnetic fields, low operating voltages, low cost, compactness and mechanical endurance. They are already successfully utilized in Projectile Spectator Detector (PSD) of NA61 at CERN, and will be utilized soon in PSD of CBM at FAIR and Forward Hadron CALorimeters (FHCAL) of BM@N at NICA heavy-ion collision experiments. The main issue of SiPM application is their degradation due to high neutron fluence that can reach up to 2E11 neq/cm2 per year of the experiment operation. Multiple irradiation tests of SiPMs produced by Ketek, Zecotek, Hamamatsu and Sensl manufacturers were conducted at the cyclotron of NPI Rez with a broad neutron spectrum and total fluences in the wide range of 5E10 - 6E12 neq/cm2. Detailed characterisation of all SiPMs was performed based on dependencies of dark current on voltage, capacitance on voltage and frequency, and response to LED light on voltage. SiPM's breakdown voltage, quenching resistance, pixel capacitance, gain and signal to noise ratio were extracted from these measurements. Those parameters' dependence on neutron fluence and their variability are discussed. Performance of the PSD calorimeter module equipped with irradiated SiPMs in CERN during the beam scan with 2 - 80 GeV/c protons is briefly overviewed.

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