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首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Modeling Rough-Surface and Granular Scattering at Terahertz Frequencies Using the Finite-Difference Time-Domain Method
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Modeling Rough-Surface and Granular Scattering at Terahertz Frequencies Using the Finite-Difference Time-Domain Method

机译:使用有限差分时域方法对太赫兹频率下的粗糙表面和颗粒散射进行建模

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Exploration of the terahertz (THz) portion of the electromagnetic spectrum has recently expanded due to advances in ultrafast optical laser systems. The application of THz imaging to detect explosive materials (and other chemical agents) is a promising potential application because of the unique spectral signatures found for many explosives in the THz band. However, since the wavelength of THz radiation is on the order of tens to hundreds of micrometers, the rough interface between materials and the granular nature of material mixtures (such as explosives) may cause frequency-dependent scattering, which could mask the spectral signature. Thus, to evaluate the effectiveness of THz imaging systems, it is necessary to characterize the combined volume and rough-surface scattering effects. Because of the complexity of the media and the requirement for broadband modeling, the finite-difference time-domain (FDTD) formulation is an ideal tool. In this paper, transmission measurements through granular media and reflection measurements from controlled rough surfaces are shown to be in good agreement with FDTD results. Methods for extracting the material spectral peaks from a limited number of measurements are presented and discussed.
机译:由于超快光学激光系统的发展,电磁频谱的太赫兹(THz)部分的探索最近得到了扩展。太赫兹成像技术用于检测爆炸物(和其他化学试剂)是一种有前途的潜在应用,因为在太赫兹频带中发现了许多爆炸物的独特光谱特征。但是,由于太赫兹辐射的波长在几十到几百微米的数量级,因此材料之间的粗糙界面和材料混合物(例如炸药)的颗粒性质可能会导致频率相关的散射,从而可能掩盖光谱特征。因此,为了评估太赫兹成像系统的有效性,有必要表征组合的体积和粗糙表面散射效应。由于媒体的复杂性和对宽带建模的要求,有限差分时域(FDTD)公式是一种理想的工具。在本文中,通过颗粒介质的透射测量和受控粗糙表面的反射测量显示与FDTD结果非常吻合。提出并讨论了从有限数量的测量中提取材料光谱峰的方法。

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