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Recent progress with microchannel-plate PMTs

机译:微通道板PMT的最新进展

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Microchannel-plate (MCP) PMTs were identified as the only suitable photon sensors for the two DIRC detectors of the PANDA experiment at FAIR. As the long-standing aging problem of MCP-PMTs was recently overcome by coating the MCP pores with an atomic layer deposition (ALD) technique, further improved 2" MCP-PMTs were investigated. The best PHOTONIS device has reached a lifetime of >20 C/cm~2 integrated anode charge without any sign of aging. Also the newly developed 2" MCP-PMTs of Hamamatsu are maturing and are usable in high rate environments. The status of our long-term lifetime measurements and the performance parameters of the currently most advanced ALD-coated MCP-PMTs from PHOTONIS and Hamamatsu are presented. In addition, first results obtained with a new quality assurance setup for MCP-PMTs are discussed. This setup consists of a high performance DAQ system to measure the response of >64 anode pixels simultaneously. The system allows to study and quantify background parameters like position dependent dark count rates and ion afterpulsing as well as temporal and spacial distributions of recoil electrons and the effects of electronic and charge-sharing crosstalk among the anode pixels.
机译:在FAIR上,微通道板(MCP)PMT被确定为PANDA实验的两个DIRC探测器的唯一合适的光子传感器。由于最近通过用原子层沉积(ALD)技术覆盖MCP孔克服了MCP-PMT长期存在的老化问题,因此研究了进一步改进的2“ MCP-PMT。最佳的PHOTONIS装置的使用寿命已超过20 C / cm〜2集成阳极电荷,没有任何老化迹象。新开发的Hamamatsu 2“ MCP-PMT也已经成熟,可以在高速率环境中使用。介绍了我们的长期使用寿命测量的状态以及PHOTONIS和Hamamatsu目前最先进的ALD涂层MCP-PMT的性能参数。此外,还讨论了使用新的MCP-PMT质量保证设置获得的第一个结果。该设置包含一个高性能的DAQ系统,可同时测量> 64个阳极像素的响应。该系统可以研究和量化背景参数,例如与位置有关的暗计数率和离子后脉冲,以及反冲电子的时间和空间分布以及阳极像素之间电子和电荷共享串扰的影响。

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