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Slow Wave Applications of Electromagnetically Induced Transparency in Microstrip Resonator

机译:微带谐振器中电磁感应透明度的慢波应用

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摘要

We report a novel guided-wave resonator that supports multiple bands of electromagnetically induced transparency (EIT). The platform for the spatial and spectral interference is obtained by a microstrip transmission line loaded with proximity-coupled open-circuited stubs. We show experimentally that with two microstrip open stubs, a complete destructive interference takes place leading to a single EIT band with near-unity transmission efficiency. More interestingly, the addition of a third stub results in a supplementary EIT band with a Q-factor of 147 and an effective group refractive index of 530. With the open-stub configuration, the EIT phase response can be dynamically controlled by varying the capacitance between the adjacent stubs without breaking the transmission path of the underlying electromagnetic waves. Therefore, the proposed structure is well suited for buffering and tunable phase modulation applications. Since the proposed structures are compact and fully planar, we anticipate seamless integration with low-profile high frequency electronics.
机译:我们报告了一种新型的导波谐振器,它支持电磁感应透明性(EIT)的多个波段。空间和光谱干扰的平台是通过一条微带传输线获得的,该传输线装有邻近耦合的开路短截线。我们通过实验表明,使用两个微带开放存根,会发生完全的破坏性干扰,从而导致单个EIT频段具有接近统一的传输效率。更有趣的是,增加第三个短截线会产生一个补充的EIT频带,其Q因子为147,有效组折射率为530。采用开截线配置时,可以通过改变电容来动态控制EIT相位响应。在相邻的短截线之间不破坏底层电磁波的传输路径。因此,所提出的结构非常适合于缓冲和可调相位调制应用。由于建议的结构紧凑且完全平面,因此我们期望与低调高频电子设备无缝集成。

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