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Immersion Effect of Dielectric Lens Radiation Performances Fed with Double Crossed Terahertz Planar Bow-Tie Antenna

机译:双十字太赫兹平面蝶形领结天线对介电透镜辐射性能的浸没效应

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摘要

The size of a detector is the primary consideration to obtain a high-resolution imaging quality. A THz quasi optic can combine an optical component of a hemispherical dielectric lens and an antenna-based sensor to capture effectively incoming radiation. The use of the hemispherical lens can contribute to sensor size. This paper investigates an immersion technique for dielectric lens size reduction to provide radiation performances of gain and radiation efficiency on the purpose of antenna size miniaturization at Terahertz (THz) frequency. This investigation is using the CST Microwave Studio simulation software. Gain and radiation efficiency show a decreasing pattern as the dielectric thickness increases. The obtained gain is still 30 dB by adding thickness until half of the hemispherical radius once combined with matching layers and 0.6 of the radius once without matching layers. Therefore, a smaller size than a hemispherical structure can still provide excellent radiation performance. This information is useful to design as small as a THz detector to obtain high-resolution imaging.
机译:检测器的尺寸是获得高分辨率成像质量的主要考虑因素。 THz准光学器件可以将半球形介电透镜的光学组件与基于天线的传感器结合起来,以有效地捕获入射的辐射。半球形透镜的使用会影响传感器的尺寸。本文研究了一种用于减小介电透镜尺寸的浸没技术,目的是在太赫兹(THz)频率下将天线尺寸小型化,从而提供增益和辐射效率的辐射性能。该调查使用的是CST Microwave Studio仿真软件。随着介电层厚度的增加,增益和辐射效率呈下降趋势。通过增加厚度直到与匹配层组合在一起的半球半径的一半和一次不具有匹配层的半径的0.6倍,所获得的增益仍然是30 dB。因此,比半球形结构小的尺寸仍可以提供优异的辐射性能。该信息对于设计小至THz检测器以获得高分辨率成像很有用。

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