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Terahertz Near-Field Focusing Using a 3-D Printed Cassegrain Configuration for Backscattered Side-Channel Detection

机译:使用3-D打印的Cassegrain配置进行太赫兹近场聚焦,用于反向散射边通道检测

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摘要

This paper presents the use of terahertz near-field focusing for backscatter side-channel detection. Near-field focusing is done by using a Cassegrain reflector configuration. The focuser is designed to produce the focused beam 28 cm away from the antenna aperture. The focusing is done in the near-field region by axially moving the subreflector from the focal point. It is observed that the subreflector position has to shift approximately 11 wavelengths along the axis to create the focus at the required location. The focused antenna gain is 46 dBi, while the 3 dB focus width and depth of the designed antenna is similar to 4 mm and 10 cm, respectively. It is found that the focal plane position is sensitive to the subreflector shifts and it is observed that 1 mm change in the subreflector position can shift the focal plane by similar to 2 cm. The simulations are compared with the measurement results of a fabricated prototype and good agreement is observed. The antenna is fabricated by using 3-D printing technology, which allows rapid prototyping. Finally, we have demonstrated the detection of backscatter side channel from the board placed at 28 cm away from the designed antenna. The received power level of the backscatter signal increases by 6 dB as compared to horn antenna.
机译:本文介绍了太赫兹近场聚焦在反向散射侧信道检测中的应用。通过使用Cassegrain反射镜配置完成近场聚焦。聚焦器设计为在距天线孔径28 cm处产生聚焦束。通过从焦点轴向移动次反射器,可以在近场区域进行聚焦。可以观察到,副反射器的位置必须沿轴偏移大约11个波长,才能在所需位置产生焦点。聚焦天线增益为46 dBi,而设计天线的3 dB聚焦宽度和深度分别类似于4 mm和10 cm。发现焦平面位置对副反射镜的偏移敏感,并且观察到副反射镜位置的1mm变化可以使焦平面偏移类似于2cm。将模拟结果与制造的原型的测量结果进行比较,并观察到良好的一致性。该天线是使用3-D打印技术制造的,该技术可以快速制作原型。最后,我们演示了从距离设计天线28厘米的板上检测到反向散射侧信道的方法。与喇叭天线相比,反向散射信号的接收功率电平增加了6 dB。

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