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首页> 外文期刊>Microwave and Wireless Components Letters, IEEE >Double-Band Tunable Magnetic Conductor Realized by a Grounded Ferrite Slab Covered With Metal Strip Grating
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Double-Band Tunable Magnetic Conductor Realized by a Grounded Ferrite Slab Covered With Metal Strip Grating

机译:双接地可调磁导体由覆盖有金属带状光栅的接地铁氧体平板实现

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摘要

The property of a perfect magnetic conductor (PMC) boundary is achieved at two frequency bands by using Faraday rotation in a grounded ferrite slab covered with a metal strip grating. The PMC boundary condition is obtained for the wave polarized perpendicularly to the strips. The two frequency bands correspond to 45$^{circ}$ and 90$^{circ}$ Faraday rotation across the slab, respectively. In the former case, the strip grating traps the incident rays inside the slab after one round trip in the slab. As a result, the incident ray performs two round trips inside the slab before exiting it. This provides the maximum possible Faraday rotation with the smallest possible slab thickness. The concept is demonstrated experimentally by placing the PMC structure along the sidewalls of a rectangular waveguide so as to produce a TEM wave.
机译:通过在覆盖有金属条状光栅的接地铁氧体平板中使用法拉第旋转,可以在两个频带上实现完美磁导体(PMC)边界的特性。对于垂直于条带偏振的波,获得了PMC边界条件。这两个频带分别对应于整个平板上的法拉第旋转45°和90°。在前一种情况下,条形光栅在板中往返一圈后将入射光线捕获在板内部。结果,入射光线在离开平板之前在平板内部执行了两次往返。这样可以以最小的板坯厚度实现最大的法拉第旋转。通过沿矩形波导的侧壁放置PMC结构以产生TEM波,通过实验证明了该概念。

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