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Long range trace detection by radar REMPI

机译:雷达REMPI的远程痕量检测

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We demonstrate the feasibility of using microwave scattering from free electrons generated by resonantly enhanced multi-photon ionization (REMPI) for trace species detection. The laser is tuned to ionize only the selected molecular trace species in ambient air. We achieve detection of parts-per-billion of NO in atmospheric pressure nitrogen, in dry air and in laboratory air with 50% humidity. In addition, we performed at-range measurements in order to prove the feasibility of using the Radar REMPI detection technique in a remote configuration. We obtained reliable backscattered microwave signal 1m away while focusing a laser from 10m distance from the target. We have extended the use of the Radar REMPI detection scheme to more complicated molecular systems by pre-dissociating the molecule into smaller fragments which can be detected with high specificity. We demonstrate the detection of SF6 by laser dissociation of the SF6 molecule, and measuring the Radar REMPI signals obtained from the SF2 product. The SF2 is produced by the UV REMPI laser pulse itself, and a scattered microwave signal is detected from the SF2 molecule. Significant enhancement is achieved using a pre-ionizing pulse from a Nd YAG laser shortly before the measurement. The short time between fragmentation and detection allows transient fragments and fragments in vibrational nonequilibrium to be detected. This approach may allow for the identification of complex molecules by remotely detecting even short lived molecular constituents or fragments which are produced either during or just shortly before the Radar REMPI measurement
机译:我们展示了使用通过谐振增强的多光子电离(Rempi)产生的微波散射的可行性进行痕量物种检测。调节激光器仅在环境空气中仅电离所选的分子痕量物质。我们在干燥空气中达到大气压氮的零件,在50%湿度下达到大气压氮。另外,我们在远程配置中执行了在远程配置中使用雷达REMPI检测技术的可行性。我们获得可靠的反向散射微波信号1m,同时将激光聚焦到距目标10米的距离。通过将分子预处理分子成较小的片段,我们通过将分子预处理到更较小的片段来扩展到更复杂的分子系统的使用。我们通过SF6分子的激光解离和测量从SF2产品获得的雷达REMPI信号来证明SF6的检测。 SF2由UV Rempi激光脉冲本身产生,并且从SF2分子检测散射的微波信号。使用从测量前短暂的Nd YAG激光激光的预电离脉冲实现显着增强。碎片和检测之间的短时间允许检测瞬时片段和振动非QuigiBibium中的碎片。这种方法可以通过远程检测甚至在雷达REMPI测量之前或短暂的短时间内产生的甚至短的寿命分子成分或片段来鉴定复杂分子

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