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Remote Detection of Radioactive Material using High-Power Pulsed Electromagnetic Radiation

机译:使用大功率脉冲电磁辐射远程检测放射性物质

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摘要

Remote detection of radioactive materials is impossible when the measurement location is far from the radioactive source such that the leakage of high-energy photons or electrons from the source cannot be measured. Current technologies are less effective in this respect because they only allow the detection at distances to which the high-energy photons or electrons can reach the detector. Here we demonstrate an experimental method for remote detection of radioactive materials by inducing plasma breakdown with the high-power pulsed electromagnetic waves. Measurements of the plasma formation time and its dispersion lead to enhanced detection sensitivity compared to the theoretically predicted one based only on the plasma on and off phenomena. We show that lower power of the incident electromagnetic wave is sufficient for plasma breakdown in atmospheric-pressure air and the elimination of the statistical distribution is possible in the presence of radioactive material.
机译:当测量位置远离放射源时,无法远程检测放射性物质,从而无法测量高能光子或电子从放射源的泄漏。当前技术在这方面效率较低,因为它们仅允许在高能光子或电子可以到达检测器的距离处进行检测。在这里,我们演示了一种通过高功率脉冲电磁波引起的等离子体击穿来远程检测放射性物质的实验方法。与仅基于等离子体开和关现象的理论预测值相比,等离子体形成时间及其分散度的测量结果可提高检测灵敏度。我们显示出较低的入射电磁波功率足以使大气压空气中的等离子体击穿,并且在存在放射性物质的情况下消除统计分布是可能的。

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