通过低于截止频率的波导的共振诱导传输:波导的有效介质模型

Hao Xu, J. Hao, Jiajie Dai, Lei Zhou
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摘要

众所周知,电磁波不能以低于其截止频率的频率通过金属波导,因为在这种条件下波导内只允许有倏逝波。然而,通过在波导中插入电或磁类型的局部共振结构,我们发现不同极化的电磁波在远低于波导截止值的频率下通过波导进行了非凡的传输[1][2]。我们已经确定了这种不寻常的透明度的两种不同的机制,其中透明的介质可以通过双正的正的和弱的来表征[见图1(左)],或者通过双负的正的和弱的[见图1(右)]来表征[参见参考文献2]。我们还证明,虽然空心金属波导可以被视为有效介质,其epsivwg = 1 - fp 2/f2,横电(TE)极化波muwg = 1,但它应该被视为不同的有效介质,其epsivwg = 1, muwg = 1 - fp 2/f2,横磁(TM)极化波,其中fp是波导的截止频率。我们设计了现实的电/磁共振结构,并对这种现实结构进行了精确的有限差分时域(FDTD)模拟,成功地证明了基于模型计算的所有理论预测。
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Resonance-induced transmissions through waveguides below cut-off frequencies: An effective-medium model for waveguide
It is well known that electromagnetic (EM) waves can not transmit through a metallic waveguide at frequencies well below its cutoff frequency, since only evanescent waves are allowed inside the waveguides under such conditions. However, through inserting local resonance structures of either electric or magnetic type into the waveguide, we find extraordinary transmissions of EM waves with different polarizations through the waveguide at frequencies well below the waveguide's cut-off value [1] [2]. We have identified two different mechanisms for such unusual transparencies, in which the medium at transparency can be characterized either by doubly positive epsiveff and mueff [see Fig. l(left)] or by doubly negative epsiveff and mueff [see Fig. 1 (right)] [see also Ref. 2 for such a mechanism]. We also demonstrated that while a hollow metallic waveguide can be viewed as an effective medium with epsivwg = 1 - fp 2/f2, muwg = 1 for the transverse-electric (TE) polarized waves, it should be viewed as a different effective medium with epsivwg = 1, muwg = 1 - fp 2/f2 for the transverse-magnetic (TM) polarized waves, where fp is the cut-off frequency of the waveguide. We have designed realistic electric/magnetic resonance structures, and have performed accurate finite-different-time-domain (FDTD) simulations on such realistic structures to successfully demonstrate all theoretical predictions based on the model calculations.
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