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Novel Dose Rate Monitoring for Intense Radiation Fields Based on Cavity Ring-down Laser Spectroscopy

机译:基于空腔倒塌激光光谱的强辐射场的新型剂量率监测

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For dose rate monitoring in high level radiation fields, we have proposed a concept of novel dose rate monitoring method based on high sensitive laser absorption spectroscopy technique for radiation induced chemical species. The yield of the species depends on the intensity of the radiation field. The dose rate of the radiation field, therefore, can be derived from concentrations of the species. We have adopted cavity ring-down spectroscopy, which is an ultra high sensitive laser absorption spectroscopy, to measure trace quantities of radiation induced chemical species. We have tried proof-of-principle experiments through the off-line/on-line measurement of 60{sup left}Co gamma-ray induced NO{sup}2 in the air. From these results, it has been verified that the present cavity ring-down measurement is quite useful as a dose rate monitoring method for intense radiation fields with high radiation resistance, where the expected performance will be the detectable range of the absorbed dose rate is from 0.5 to 2 × 10{sup}3 Gy(air)/s with the time resolution of about 30 s.
机译:对于高级辐射场中的剂量率监测,我们提出了一种基于高敏感激光吸收光谱技术的新型剂量率监测方法的概念,用于辐射诱导的化学物质。物种的产量取决于辐射场的强度。因此,辐射场的剂量率可以衍生自物质的浓度。我们采用了腔斜频光谱,其是超高敏感的激光吸收光谱,以测量痕量的辐射诱导的化学物质。我们尝试通过60 {SUP左} CO伽马射线的离线/在线测量来试验原则上的实验,在空中诱导NO {SUP} 2。从这些结果中,已经验证了当前腔卷曲测量作为具有高辐射抗性的强烈辐射场的剂量速率监测方法非常有用,其中预期性能将是吸收剂量率的可检测范围0.5至2×10 {sup} 3 gy(空气)/ s,时间分辨率约为30秒。

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