论文标题
大区域Picsecond PhotodeTector的空气转移生产方法
Air-Transfer Production Method for Large-Area Picosecond Photodetectors
论文作者
论文摘要
我们使用单个$ lappd^{\ text {tm}} $模块开发的“空气转移”组装过程设计和原型制定了大区域微通道板光电层流(MCP-PMT)的过程步骤。提出了结果,以应对设计可靠的包装的挑战,该包装可以从真空管内部传输大量的电信号或条带读数,并密封大周到的窗户界面。我们还在大区域的低度比例中合成了光电,并表明微通道平板在阴极合成后恢复了其功能。这些步骤为多嵌套的低空(LV)和超高VACUUM(UHV)系统的多个模块批处理设施提供了信息。该设施设计在密封捏合之前提供了对多个MCP-PMT模块的完整访问,以进行泄漏检查和实时光电阴极优化。
We have designed and prototyped the process steps for the batch production of large-area micro-channel-plate photomultipliers (MCP-PMT) using the "air-transfer" assembly process developed with single $LAPPD^{\text{TM}}$ modules. Results are presented addressing the challenges of designing a robust package that can transmit large numbers of electrical signals for pad or strip readout from inside the vacuum tube and hermetically sealing the large-perimeter window-body interface. We have also synthesized a photocathode in a large-area low-aspect-ratio volume, and shown that the micro-channel plates recover their functionality after cathode synthesis. The steps inform a design for a multi-module batch facility employing dual nested low-vacuum (LV) and ultra-high-vacuum (UHV) systems in a small-footprint. The facility design provides full access to multiple MCP-PMT modules prior to hermetic pinch-off for leak-checking and real-time photocathode optimization.