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Pulse-resolved multi-photon X-ray detection at 31 MHz based on a quadrant avalanche photodiode

机译:基于象限雪崩光电二极管的31 MHz脉冲分辨多光子X射线检测

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摘要

The technical realisation and the commissioning experiments of a high-speed X-ray detector based on a quadrant avalanche silicon photodiode and high-speed digitizers are described. The development is driven by the need for X-ray detectors dedicated to time-resolved diffraction and imaging experiments, ideally requiring pulse-resolved data processing at the synchrotron bunch repetition rate. By a novel multi-photon detection scheme, the exact number of X-ray photons within each X-ray pulse can be recorded. Commissioning experiments at beamlines P08 and P10 of the storage ring PETRA III, at DESY, Hamburg, Germany, have been used to validate the pulse-wise multi-photon counting scheme at bunch frequencies ≥31 MHz, enabling pulse-by-pulse readout during the PETRA III 240-bunch mode with single-photon detection capability. An X-ray flux of ≥3.7 × 109 photons s−1 can be detected while still resolving individual photons at low count rates.
机译:描述了基于象限雪崩硅光电二极管和高速数字化仪的高速X射线探测器的技术实现和调试实验。对专用于时间分辨衍射和成像实验的X射线检测器的需求推动了这一发展,理想情况下,需要以同步加速器束重复率进行脉冲分辨数据处理。通过新颖的多光子检测方案,可以记录每个X射线脉冲中X射线光子的确切数量。在德国汉堡的DESY,在存储环PETRA III的光束线P08和P10上进行的调试实验已用于验证束频率≥31bunchMHz时的逐脉冲多光子计数方案,从而能够在逐个脉冲读取期间具有单光子检测功能的PETRA III 240束模式。可以检测到≥3.7×10 9 光子s -1 的X射线通量,同时仍能以低计数率分辨单个光子。

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