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首页> 外文期刊>Journal of Applied Physics >Properties of omnidirectional gap and defect mode of one-dimensional photonic crystal containing indefinite metamaterials with a hyperbolic dispersion
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Properties of omnidirectional gap and defect mode of one-dimensional photonic crystal containing indefinite metamaterials with a hyperbolic dispersion

机译:含不确定双曲双色散材料的一维光子晶体的全向间隙和缺陷模式

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摘要

The structure of one-dimensional photonic crystal (1DPC) containing indefinite metamaterials with a hyperbolic dispersion relation is proposed to realize the omnidirectional gap for the design of omnidirectional reflectors and filters. It is demonstrated that this 1DPC can result in a similar zero average index (zero-n) gap usually appearing in the 1DPC containing isotropic left-handed materials. The properties of zero-n gap and defect modes of this photonic crystal are studied in detail. The edge of this zero-n gap is insensitive to incident angle and polarization of light in contrast to the Bragg gap. When a defect layer is introduced into the 1DPC, a defect mode appears inside the omnidirectional gap. The spectral position of defect mode is found to be weakly dependent on the incident angle of light and nearly invariant to the scale length of photonic crystal.
机译:为了实现全向间隙,设计全向反射镜和滤光片,提出了一种包含具有双曲线色散关系的不确定超材料的一维光子晶体(1DPC)的结构。证明了这种1DPC可以导致通常在包含各向同性左手材料的1DPC中出现类似的零平均指数(zero-n)间隙。详细研究了该光子晶体的零n间隙性质和缺陷模式。与布拉格间隙相反,该零n间隙的边缘对入射角和光的偏振不敏感。将缺陷层引入1DPC时,缺陷模式会出现在全向间隙内。发现缺陷模式的光谱位置几乎不依赖于光的入射角,而几乎不依赖于光子晶体的标度长度。

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