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Properties of 100-mm X 100-mm triple stacks of microchannel plates used in a sealed detector for x-ray crystallography

机译:用于X射线晶体学的密封检测器中使用的100毫米X 100毫米三通道微通道板叠层的性能

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Abstract: We report the assembly of an imaging phototube which, together with a thin NaI(Tl) x-ray scintillator, forms a photon counting area detector for x-ray crystallography. The tube contains a bialkali photocathode, a triple (Z) stack of 100 mm $MUL 100 mm MCPs, and a 133 mm $MUL 133 mm two dimensional delay line readout. Some aspects of the processing setup that are unique to the very large tube are described. Design considerations with respect to detective efficiency are discussed. Measured gain characteristics of 100 mm $MUL 100 mm Z stacks are presented, showing fairly narrow pulse height distributions which are improved with UV scrubbing. The MCPs, manufactured from low resistivity glass, are subject to thermal instability, and an account is given of thermal runaway which occurred for a stack of MCPs composed of plates with an average room temperature resistivity of approximately 400 M approximately ega@-cm$+2$/. !16
机译:摘要:我们报告了成像光电管的组装,该光电管与薄的NaI(Tl)x射线闪烁器一起形成了用于x射线晶体学的光子计数区域检测器。该管包含一个双碱性光电阴极,一个100 mm MUL 100 mm MCP的三重(Z)堆栈和133 mm MUL 133 mm二维延迟线读数。描述了非常大的管子所特有的处理设置的某些方面。讨论了有关检测效率的设计注意事项。给出了100 mm $ MUL 100 mm Z叠层的测量增益特性,显示出相当窄的脉冲高度分布,通过UV洗涤可以改善这种情况。由低电阻率玻璃制成的MCP易受热不稳定的影响,并考虑了热失控,这是由一堆由平均室温电阻率约为400 M的板组成的MCP所产生的2 $ /。 !16

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