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Electromagnetic Scattering from Dielectric Surfaces at Millimeter Wave and Terahertz Frequencies

机译:介电表面在毫米波和太赫兹频率下的电磁散射

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With the demand for larger bandwidths and faster data speeds, wireless communication systems are expanding into the millimeter wave and terahertz region of the electromagnetic spectrum. Successful transition to higher frequencies, particularly for systems located in urban or indoor environments, will require a thorough understanding of the reflection, transmission, absorption, and scattering of a wide variety of materials. For this study, the co-polarization and cross-polarization backscattering coefficients of several dielectrics were measured in compact radar ranges operating from 160 GHz to 1.55 THz. These structures consisted of dielectric disks with various rough surfaces. The backscattering measurements of these disks were compared as a function of polarization, incident angle, roughness, and frequency.
机译:随着对更大带宽和更快数据速度的需求,无线通信系统正在扩展到电磁频谱的毫米波和太赫兹区域。成功地过渡到更高的频率,尤其是对于位于城市或室内环境中的系统,将需要透彻了解各种材料的反射,透射,吸收和散射。在本研究中,在160 GHz至1.55 THz的紧凑型雷达范围内,测量了几种电介质的同极化和交叉极化反向散射系数。这些结构由具有各种粗糙表面的介质盘组成。比较了这些圆盘的反向散射测量结果,它们是偏振,入射角,粗糙度和频率的函数。

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