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Multistatic reflection imaging with terahertz pulses

机译:太赫兹脉冲的多静态反射成像

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摘要

Recent advances in the technique of terahertz time-domain spectroscopy have led to the development of the first fiber-coupled room-temperature broadband terahertz sources and detectors. The fiber coupling permits the repositioning of the emitter and receiver antennas without loss of temporal calibration or alignment, thus enabling multistatic imaging. We describe a new imaging method which exploits this new capability. This technique emulates the data collection and image processing procedures developed for geophysical prospecting. We use a migration procedure to solve the inverse problem; this permits us to reconstruct the location, shape, and refractive index of targets. We show examples for both metallic and dielectric model targets, and we perform velocity analysis on dielectric targets to estimate the refractive indices of imaged components. These results broaden the capabilities of terahertz imaging systems, and also demonstrate the viability of the THz system as a test bed for the exploration of new seismic processing methods.
机译:太赫兹时域光谱技术的最新进展导致了第一批光纤耦合室温宽带太赫兹源和检测器的开发。光纤耦合允许在不损失时间校准或对准的情况下重新放置发射器和接收器天线,从而实现多静态成像。我们描述了一种利用这种新功能的新成像方法。该技术模拟了为地球物理勘探开发的数据收集和图像处理程序。我们使用迁移程序来解决反问题。这使我们能够重建目标的位置,形状和折射率。我们显示了金属和介电模型目标的示例,并对介电目标进行了速度分析,以估计成像组件的折射率。这些结果拓宽了太赫兹成像系统的功能,也证明了太赫兹系统作为探索新的地震处理方法的试验台的可行性。

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