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首页> 外文期刊>Applied Physics. A, Materials Science & Processing >Photon tunneling in a frustrated total internal reflection structure with a lossy indefinite metamaterial barrier
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Photon tunneling in a frustrated total internal reflection structure with a lossy indefinite metamaterial barrier

机译:具有受阻不确定的超材料势垒的受挫全内反射结构中的光子隧穿

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摘要

We study the phenomenon of photon tunneling through a frustrated total internal reflection structure with a dispersive lossy indefinite metamaterial barrier. The tunneling coefficient, lateral shift, and tunneling time for different incident light waves through the barrier are obtained by employing the stationary-phase approximation. The properties of tunneling time and lateral shift are discussed for different metamaterial parameters. It is shown that negative lateral shift and tunneling time can appear in the cutoff and always cutoff metamaterials. The lateral shift can be enhanced by adjusting the light frequency, the barrier thickness, and the permittivity or permeability of the indefinite metamaterial. In addition, it is found that the lateral shift can be resonantly amplified due to the weak loss of the indefinite metamaterial slab. The Hartman effects of the lateral shift and tunneling time are also demonstrated.
机译:我们研究了光子通过受挫的全内反射结构隧穿的现象,该结构具有色散损耗不确定的超材料屏障。通过使用固定相位近似,可以获得通过屏障的不同入射光波的隧穿系数,横向位移和隧穿时间。讨论了不同的超材料参数的隧穿时间和横向位移的性质。结果表明,在超临界材料中总是出现负的横向位移和隧穿时间,并且总是超临界材料。可以通过调整不确定的超材料的光频率,势垒厚度以及介电常数或磁导率来增强横向偏移。另外,发现由于不确定的超材料板的弱损耗,横向位移可以被共振放大。还证明了横向位移和隧穿时间的哈特曼效应。

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