论文标题
在燃气Cherenkov探测器的高速环境中的光传感器的性能
Performance of photosensors in a high-rate environment for gas Cherenkov detectors
论文作者
论文摘要
杰斐逊实验室(Jefferson Lab)的螺线管大强度设备(实心)将推动大型探测器的光度界限,这需要使用轻质气阈值Cherenkov计数器进行在线活动选择。由于高光度,该计数器中的单光子背景速率可能超过160 kHz/cm $^2 $,在光电传感器中。因此,必须验证计划的光传感器和读取电子设备的高速限制,以减轻故障的风险。我们在杰斐逊实验室的C Hall C中报告了使用小型望远镜Cherenkov设备进行的设计和早期研究。使用JLAB FADC250模块进行读数测试,测试了市售的多动型光电层流(MAPMT)和低成本大面积Picsecond PhotodeTector(LAPPD)。测试光束结果表明,MAPMT阵列和内部条纹LAPPD可以在高速率环境中检测并识别单电子和成对生产事件。由于其较高的量子效率,MAPMT阵列与内部条纹LAPPD相比,单电子和成对生产事件之间提供了更好的分离。 GEANT4模拟证实了我们的望远镜设备的实验性能。
The solenoidal large intensity device (SoLID) at Jefferson Lab will push the boundaries of luminosity for a large-acceptance detector, which necessitates the use of a light-gas threshold Cherenkov counter for online event selection. Due to the high luminosity, the single-photon background rate in this counter can exceed 160 kHz/cm$^2$ at the photosensors. Therefore, it is essential to validate the high-rate limits of the planned photosensors and readout electronics in order to mitigate the risk of failure. We report on the design and an early set of studies carried out using a small telescopic Cherenkov device in a high-rate environment up to 60 kHz/cm$^2$, in Hall C at Jefferson Lab. Commercially available multi-anode photomultipliers (MaPMT) and low-cost large-area picosecond photodetectors (LAPPD) were tested using the JLab FADC250 modules for readout. The test beam results show that the MaPMT array and the internal stripline LAPPD can detect and identify single-electron and pair-production events in high-rate environments. Due to its higher quantum efficiency, the MaPMT array provided a better separation between the single-electron and the pair-production events compared to the internal stripline LAPPD. A GEANT4 simulation confirms the experimental performance of our telescopic device.