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Response of microchannel plates in ionization mode to single particles and electromagnetic showers

机译:电离模式下微通道板对单个颗粒和电磁波的响应

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摘要

Hundreds of concurrent collisions per bunch crossing are expected at future hadron colliders. Precision timing calorimetry has been advocated as a way to mitigate the pileup effects and, thanks to their excellent time resolution, microchannel plates (MCPs) are good candidate detectors for this goal. We report on the response of MCPs, used as secondary emission detectors, to single relativistic particles and to electromagnetic showers. Several prototypes, with different geometries and characteristics, were exposed to particle beams at the INFN-LNF Beam Test Facility and at CERN. Their time resolution and efficiency are measured for single particles and as a function of the multiplicity of particles. Efficiencies between 50% and 90% to single relativistic particles are reached, and up to 100% in presence of a large number of particles. Time resolutions between 20ps and 30ps are obtained.
机译:在未来的强子对撞机上,预计每束交叉会同时发生数百次碰撞。提倡精密定时量热法是减轻堆积效应的一种方法,由于其出色的时间分辨率,微通道板(MCP)是实现此目标的良好候选检测器。我们报告了用作次级发射检测器的MCP对单个相对论粒子和电磁辐射的响应。在INFN-LNF光束测试设施和CERN,几款具有不同几何形状和特性的原型都暴露于粒子束中。测量单个颗粒的时间分辨率和效率,并作为多个颗粒的函数。单个相对论粒子的效率达到50%到90%,在存在大量粒子的情况下,效率高达100%。获得的时间分辨率介于20ps和30ps之间。

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