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Backward propagation of surface slow light in photonic crystals through morphological diversity

机译:通过形态多样性将表面慢光在光子晶体中向后传播

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We propose and demonstrate photonic crystals (PCs) providing backward-directional propagation of surface slow waves, which is significant for potential PC-based photonic applications. An effective pathway for backward directing of surface slow light along with the modification of other important characteristics is presented via implementing surface morphological diversity in PCs. With the surface orientation angle varying from 90° to 30°, the newly appearing bands inside the band gap shift to higher frequencies, and negative group indices up to -100 are observed as the strong indication of backward propagation. Furthermore, dependence of the propagation direction on the surface corrugation angle has been verified via detailed time-domain analyses and microwave experiments using dipole source. As obtained from both the numerical and experimental results, for instance, the structure with 60° provides a well-defined backward propagation. In addition, normalized-delay-bandwidth-product can easily be modified by varying the surface orientation angle in the proposed structures according to the necessities of the application. Furthermore, the group velocity dispersion spectra extracted for each periodic structure exhibit considerably high-range near-zero values as 0.139 ps~2/m at 90° for the range of 495.54-501.25 nm and 0.176 ps~2/m at 85° for the range of 495.66-501.25 nm. Third order dispersion spectra also obtained for the proposed PCs show near-zero values as 0.098 ps~3/m at 90° and 0.113 ps~3/m at 85° in the corresponding frequency regimes. Facile control of the key characteristics such as backward-directed surface wave propagation in the periodic dielectric structures having morphological diversity serves a great potential for next-generation photonic applications.
机译:我们提出并演示了光子晶体(PCs),它提供了表面慢波的向后传播,这对于潜在的基于PC的光子应用而言非常重要。通过在PC中实现表面形态多样性,提出了一种向后引导表面慢光以及修改其他重要特征的有效途径。当表面取向角在90°到30°之间变化时,带隙内新出现的带移至更高的频率,并且观察到高达-100的负基团指数是向后传播的有力指示。此外,通过详细的时域分析和使用偶极子源的微波实验,已经验证了传播方向对表面波纹角的依赖性。根据数值和实验结果,例如,具有60°的结构可提供清晰的向后传播。另外,根据应用的需要,通过改变所提出的结构中的表面取向角,可以容易地修改归一化延迟带宽乘积。此外,对于每个周期性结构提取的群速度色散谱,在495.54-501.25 nm的范围内在90°时为0.139 ps〜2 / m,在85°的情况下在0.176 ps〜2 / m时表现出相当高的近零值。 495.66-501.25 nm的范围在相应的频率范围内,所提出的PC的三阶色散谱也显示出接近零的值,在90°时为0.098 ps〜3 / m,在85°时为0.113 ps〜3 / m。在具有形态多样性的周期性介电结构中,诸如后向表面波传播之类的关键特性的便捷控制为下一代光子应用提供了巨大的潜力。

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