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Numerical Modeling of Electromagnetic Scattering in Explosive Granular Media

机译:爆炸颗粒介质中电磁散射的数值模拟

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摘要

Terahertz (THz) reflection and transmission spectroscopy is a promising new field with applications in imaging and illicit material detection. One particularly useful application is for the detection of improvised explosive devices (IEDs) which is a favorite weapon of global terrorists. Explosive materials have been shown to have a unique spectral signature in the THz band which can be used to identify the explosives. However, the initial measurements performed on the explosive samples do not account for the modulation of the spectral features by random scattering that will be prevalent with actual samples encountered in applications. The intent of this work is to characterize and quantify the effects of random scattering that may alter the spectral features. Specifically, the effect that a randomly rough surface and granular scattering has on the scattered THz wave (T-Rays) will be investigated and characterized using the Finite-Difference Time-Domain (FDTD) simulation method. The FDTD method is a natural choice for this work as it can handle complicated geometries (i.e., multiple scatterers, arbitrarily rough interfaces, etc.) arbitrary materials (i.e., dispersive media, etc.) and provides broadband frequency data with one simulation pass. First, the effect that the randomly rough surface of the sample explosive has on the extracted spectral signature will be studied using a Monte-Carlo analysis. Then the effect of the complex structure inside the explosive material (the granular scatterers) will be considered. Next, when the physics of the rough surface and granular scattering are understood, a robust method to extract the spectral signature from the reflected T-rays will be developed.
机译:太赫兹(THz)反射和透射光谱法是一个有前途的新领域,其在成像和非法物质检测中的应用。一种特别有用的应用是检测简易爆炸装置(IED),这是全球恐怖分子最喜欢的武器。爆炸物已显示在THz频段具有独特的光谱特征,可用于识别爆炸物。但是,对爆炸性样品进行的初始测量并未考虑到随机散射对光谱特征的调制,而这种散射会在应用中遇到的实际样品中普遍存在。这项工作的目的是表征和量化可能改变光谱特征的随机散射的影响。具体而言,将使用有限差分时域(FDTD)模拟方法研究并表征随机粗糙表面和颗粒散射对散射THz波(T射线)的影响。 FDTD方法是这项工作的自然选择,因为它可以处理复杂的几何形状(即多个散射体,任意粗糙的界面等),任意材料(即分散介质等),并通过一次仿真即可提供宽带频率数据。首先,将使用蒙特卡洛分析研究样品炸药的随机粗糙表面对提取的光谱特征的影响。然后,将考虑爆炸性材料(颗粒状散射体)内部复杂结构的影响。接下来,当了解粗糙表面和颗粒散射的物理原理时,将开发一种从反射的T射线中提取光谱特征的可靠方法。

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    Sundberg Garth;

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  • 年度 2010
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