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Thermal luminescence sensor for ground-path contamination detection

机译:用于地面路径污染检测的热发光传感器

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摘要

A standoff method of detecting liquids on terrestrial and synthetic landscapes is presented. The interstitial liquid layers are identified through their unique molecular vibration modes in the 7.14-14.29-μm middle infrared (fingerprint) region of liberated thermal luminescence. Several seconds of 2.45-GHz beam exposure at 1.5 W cm~(-1) is sufficient for detecting polydimethyl siloxane lightly wetting the soil through its fundamental Si-CH_(3) and Si-O-Si stretching modes in the fingerprint region. A detection window of thermal opportunity opens as the surface attains maximum thermal gradient following irradiation by the microwave beam. The contaminant is revealed inside this window by means of a simple difference-spectrum measurement. Our goal is to reduce the time needed for optimum detection of the contaminant's thermal spectrum to a subsecond exposure from a limited intensity beam.
机译:提出了一种在陆地和人工景观上检测液体的对峙方法。间隙液层通过其在释放的热发光的7.14-14.29-μm中红外(指纹)区域中的独特分子振动模式来识别。在1.5 W cm〜(-1)处几秒钟的2.45-GHz光束曝光足以检测通过指纹区域中基本的Si-CH_(3)和Si-O-Si拉伸模式在土壤中轻微润湿的聚二甲基硅氧烷。当表面在微波束照射后达到最大热梯度时,打开​​了一个热机会检测窗口。通过简单的差谱测量可以在该窗口内发现污染物。我们的目标是将最佳检测污染物的热谱所需的时间减少到有限强度光束中亚秒级的曝光时间。

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