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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >An Active Dose Measurement Device for Ultra-short, Ultra-intense Laser Facilities.
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An Active Dose Measurement Device for Ultra-short, Ultra-intense Laser Facilities.

机译:一个活跃的超短剂量测量装置,超强激光设备。

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摘要

Ultra-short, ultra-intense laser facilities could produce ultra-intense pulsed radiation fields. Currently, only passive detectors are fit for dose measurement in this circumstance. Since the laser device could generate a dose up to tens of mSv outside the chamber in tens of picoseconds, resulting in a high instantaneous dose rate of ~107 Sv s-1, it is necessary to perform real-time dose measurement to ensure the safety of nearby workers. Due to fast response and excellent radiation resistance, a diamond-based dose measurement device was designed and developed, and its dose-rate response and its feasibility for such occasions were characterized. The measurement results showed that the detector had a good dose-rate linearity in the range of 3.39 mGy h-1 to 10.58 Gy h-1 for an x-ray source with energy of 39 keV to 208 keV. No saturation phenomenon was observed, and the experimental results were consistent with the results obtained from Monte Carlo simulation. The charge collection efficiency was about 80%. Experimental measurements and simulations with this dose measurement device were carried out based on the "SG-II" laser device. The experimental and simulation results preliminarily verified the feasibility of using the diamond detector to measure the dose generated by ultra-short, ultra-intense laser devices. The results provided valuable information for the follow-up real-time dose measurement work of ultra-short, ultra-intense laser devices.
机译:超短、超强激光设备产生超强脉冲辐射场。目前,只有被动探测器是适合的在这种情况下,剂量测量的。激光设备可以生成一个剂量的在几十皮秒mSv外室,导致瞬时剂量率高~ 107 Sv s - 1,有必要执行实时剂量测量,以确保附近的安全工人。钻石剂量辐射电阻测量装置的设计和发展,和它的剂量率响应及其可行性在这样的场合为特征。测量结果表明,该检测器良好的剂量率的线性范围为3.39mGy h - h - 10.58 Gy的x射线源39 keV能量208 keV。现象观察和实验结果与获得的结果一致从蒙特卡洛模拟。收集效率80%左右。这种剂量测量和模拟测量装置的基础上进行“SG-II”激光设备。仿真结果初步验证了使用金刚石探测器的可行性测量超短所产生的剂量,超强激光设备。有价值的信息的实时跟踪剂量测量超短,超强激光设备。

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