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首页> 外文期刊>International Journal of Microwave and Wireless Technologies >Microwave synthesis of Bessel, Bessel–Gauss, and Gaussian beams: a fully vectorial electromagnetic approach
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Microwave synthesis of Bessel, Bessel–Gauss, and Gaussian beams: a fully vectorial electromagnetic approach

机译:微波合成贝塞尔,贝塞尔 - 高斯和高斯梁:全矢量图的电磁方法

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摘要

Bessel, Bessel-Gauss, and Gaussian beams have widely been investigated in optics in the paraxial approximation, under the frame of a scalar wave theory. Such approximations can hardly be applied in the microwave/millimeter-wave range, where the vectorial nature of the electromagnetic fields cannot be neglected, and experimental realizations for some of these beams appeared only recently. In this work, we discuss the generation of Bessel, Bessel-Gauss, and Gaussian beams through a fully vectorial electromagnetic approach. The field derivation of all these beams is first illustrated and numerical evaluations are then reported to compare their different propagation and diffractive behaviors. Finally, an innovative approach for realizing such solutions with planar microwave devices exploiting leaky waves is demonstrated through accurate numerical simulations.
机译:在标量波理论的框架下,贝塞尔,贝塞尔高斯和高斯梁在光学近似下被广泛研究了光学元件。 这种近似几乎可以应用于微波/毫米波范围内,其中不能忽略电磁场的矢量性质,并且最近仅出现了一些这些光束的实验性实现。 在这项工作中,我们通过全矢量级电磁方法讨论贝塞尔,贝塞尔高斯和高斯梁的产生。 首先说明所有这些波束的现场推导,然后报告数值评估以比较它们的不同传播和衍射行为。 最后,通过精确的数值模拟证明了利用利用泄漏波的平面微波器件实现这种解决方案的创新方法。

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