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Development of multi-frame detector for ultra-fast radiography with 800MeV protons

机译:800mev质子的超快速射线照相的多帧检测器的开发

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Two prototype small-area pixilated detectors, capable of recording signals produced by 800 MeV proton beam micro-pulses, with a repetition rate of 358ns, were constructed. The first detector system was built around a two-dimensional photodiode array. The array was illuminated by light emitted by a monolithic 1.7mm thick LSO scintillator and imaged by a simple mirror and lens optical system. Tests were carried out with an array of 8×8 pixels 1 mm{sup}2 in area. The other detector was a hydrogen ion-chamber operated at 1 to 2.5 atm. The fast positive-ion drift velocity in hydrogen helps to minimize the space charge build up. However, for pulses spaced closely in time, less than lμs, there appear to be a substantial accumulation of positive space charge. The electronic readout chain, for each of the 64 channels, consisted of an externally clocked fast gated integrator and an amplifier coupled to an on-board ADC and a FIFO. The detectors were tested with beam up to 6×10{sup}6 protons per mm{sup}2 in 30 to 120ns-wide micro-bursts.
机译:构建了两个原型小区域像素检测器,能够记录由800 MeV质子束微脉冲产生的信号,重复率为358ns。第一检测器系统围绕二维光电二极管阵列构建。阵列被由单片1.7mm厚的LSO闪烁体发出的光照射,并由简单的镜子和镜头光学系统成像。在面积中,使用8×8像素1 mm {sup} 2的阵列进行测试。另一个检测器是在1至2.5atm的氢离子室中操作。氢气中的快速正离子漂移速度有助于最小化空间电荷积聚。然而,对于紧密间隔开的脉冲,小于Lμs,似乎似乎是正空间电荷的大量积累。对于64个通道中的每一个,电子读出链包括外部时钟的快速门控积分器和耦合到车载ADC和FIFO的放大器。用光束测试探测器,最高可达6×10 {SUP} 6质子,每mm {sup} 2,在30至120ns宽的微脉冲串中。

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