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Characterization and Simulation of Electromagnetic Beams Truncated by Finite Apertures in Millimeter and Submillimeter Wavelengths

机译:毫米和亚毫米波长的有限孔径截断的电磁束的表征和仿真

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Despite the increasing efforts in studying non-diffracting optical beams, much less work has been done in the characterization and application of these beams for millimeter and sub-millimeter wavelengths. This is because, in order to generate these beams for long distances, large equipment and antennas are required. However, if shorter distances are considered (Fresnel region), interesting and useful diffraction-resistant beams can be generated with smaller antennas. In this paper, by using scalar and vectorial approaches, we obtain analytical solutions describing plane waves, Gauss, Bessel-Gauss, and Bessel beams truncated by circular apertures, for GHz and THz frequencies. Moreover, this work aims at characterizing, simulating, and commenting possible applications of such truncated beams.
机译:尽管在研究非衍射光束方面付出了更多的努力,但是对于毫米和亚毫米波长的这些光束的表征和应用,所做的工作却少得多。这是因为,为了长距离产生这些波束,需要大型设备和天线。但是,如果考虑到较短的距离(菲涅耳区域),则可以使用较小的天线生成有趣且有用的抗衍射波束。在本文中,通过使用标量和矢量方法,我们获得了针对GHz和THz频率的描述平面波,高斯,贝塞尔-高斯和贝塞尔光束被圆孔截断的解析解。此外,这项工作旨在表征,模拟和评论此类截断光束的可能应用。

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