首页> 外文会议>Detection and Sensing of Mines, Explosive Objects, and Obscured Targets XX >Stand-Off Explosive Detection Utilizing Low Power Stimulated Emission Nuclear Quadrupole Resonance Detection and Subwavelength Focusing Wideband Super Lens
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Stand-Off Explosive Detection Utilizing Low Power Stimulated Emission Nuclear Quadrupole Resonance Detection and Subwavelength Focusing Wideband Super Lens

机译:利用低功率受激发射核四极共振检测和亚波长聚焦宽带超透镜进行对峙爆炸检测

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摘要

The need for advanced techniques to detect improvised explosive devices (IED) at stand-off distances greater than ten (10) meters has driven AMI Research and Development (AMI) to develop a solution to detect and identify the threat utilizing a forward looking Synthetic Aperture Radar (SAR) combined with our CW radar technology Nuclear Quadrupole Resonance (NQR) detection system. The novel features include a near-field sub-wavelength focusing antenna, a wide band 300 KHz to 300 MHz rapidly scanning CW radar facilitated by a high Q antenna/tuner, and an advanced processor utilizing Rabi transitions where the nucleus oscillates between states under the time dependent incident electromagnetic field and alternately absorbs energy from the incident field while emitting coherent energy via stimulated emission. AMI's Sub-wavelength Focusing Wide Band Super Lens uses a Near-Field SAR, making detection possible at distances greater than ten (10) meters. This super lens is capable of operating on the near-field and focusing electromagnetic waves to resolutions beyond the diffraction limit. When applied to the case of a vehicle approaching an explosive hazard the methodologies of synthetic aperture radar is fused with the array based super resolution and the NQR data processing detecting the explosive hazard.
机译:需要先进技术来检测对峙距离大于十(10)米的简易爆炸装置(IED),促使AMI研究与开发(AMI)开发一种解决方案,以利用前瞻性合成孔径来检测和识别威胁雷达(SAR)与我们的连续波雷达技术相结合的核四极共振(NQR)检测系统。新颖的功能包括:近场亚波长聚焦天线,由高Q天线/调谐器推动的300 KHz至300 MHz宽带快速扫描CW雷达,以及利用Rabi跃迁的先进处理器,其中核在C频率下的状态之间振荡。随时间变化的入射电磁场,并交替地从入射场吸收能量,同时通过受激发射发射相干能量。 AMI的亚波长聚焦宽带超级镜头使用近场SAR,使得在大于十(10)米的距离处进行检测成为可能。这款超级镜头能够在近场上操作,并将电磁波聚焦到超过衍射极限的分辨率。当应用于有爆炸危险的车辆时,将合成孔径雷达的方法与基于阵列的超分辨率和检测爆炸危险的NQR数据处理相融合。

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