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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Suppressed transmission in aperiodically modulated multilayered dielectric structures
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Suppressed transmission in aperiodically modulated multilayered dielectric structures

机译:在非周期性调制的多层介电结构中抑制传输

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We investigate the transmission of electromagnetic plane waves through ID binary dielectric multilayered structures that exhibit aperiodic incommensurated sequences of refractive indices. The aperiodicity is introduced by considering the sequence of refractive indices to follow a sinusoidal function whose phase φ varies as a power-law of the layer index, φ∝i{sup}v. For v > 1, the resulting sequence is effectively uncorrelated leading to the Anderson localization of most of the electromagnetic modes, except at the Bragg resonances. The crossover from a uniform structure at v = 0 to a quasi-periodic structure at v = 1 is signaled by a minimum at the spectrally averaged transmission. We perform a spectral analysis of the refractive index sequence to show its close connection to the main features exhibited by the averaged optical transmittance. Our results suggest that aperiodically modulated dielectric structures can potentially be used in the development of wide-band filters.
机译:我们调查电磁平面波通过ID二进制介电多层结构的传输,这些结构表现出非周期性的不对称的折射率序列。通过考虑折射率的序列遵循正弦函数来引入非周期性,该正弦函数的相位φ随层折射率φ的幂律变化。当v> 1时,除布拉格共振外,所得序列实际上是不相关的,从而导致大多数电磁模式的安德森局部化。在频谱平均传输时,从最小值表示从v = 0的均匀结构到v = 1的准周期结构的交叉。我们对折射率序列进行光谱分析,以显示其与平均光透射率所显示的主要特征的紧密联系。我们的结果表明,非周期调制介电结构可潜在地用于宽带滤波器的开发。

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