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首页> 外文期刊>Applied optics >Polarization-insensitive and broad-angle self-collimation in a two-dimensional photonic crystal with rectangular air holes
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Polarization-insensitive and broad-angle self-collimation in a two-dimensional photonic crystal with rectangular air holes

机译:具有矩形气孔的二维光子晶体中的偏振不敏感和广角自准直

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摘要

In this paper, we have systematically investigated the polarization-insensitive and broad-angle self-collimation behavior in a square-lattice two-dimensional photonic crystal (PhC) with rectangular air holes. By analyzing the band structures and the corresponding equi-frequency contours (EFCs), it is found that such PhC can show special dispersion properties when the half-length L and half-width W of rectangular air holes are appropriately changed. First, compared with conventional square-lattice PhCs with circular or square air holes, such PhC is easier to support polarization-insensitive self-collimation (PISC) based on the EFCs for the second band. Meanwhile, the PISC behavior such as working frequency range and effective incident angle can be more flexibly adjusted by changing the structural parameters of rectangular air holes. Second, such PhC can show long flat EFCs for the TM-3 band. This is quite helpful for supporting broad-angle self-collimation. In particular, when L = 0.5a and W/L = 0.8, this PhC will degenerate to a one-dimensional grating PhC. It can show good all-angle self-collimation behavior with an improved relative bandwidth (about 19.98%) compared with previous works. It also presents advantages in practical applications due to a relatively convenient fabrication process.
机译:在本文中,我们系统地研究了带有矩形气孔的方格二维光子晶体(PhC)中的偏振不敏感和广角自准直行为。通过分析频带结构和相应的等频轮廓线(EFC),发现当适当改变矩形气孔的半长L和半宽W时,这种PhC可以表现出特殊的色散特性。首先,与具有圆形或方形气孔的常规方格PhC相比,这种PhC更容易支持基于第二波段EFC的偏振不敏感自准直(PISC)。同时,通过改变矩形气孔的结构参数,可以更灵活地调节PISC行为,例如工作频率范围和有效入射角。其次,此类PhC可以显示TM-3频段的长平坦EFC。这对于支持广角自准直很有帮助。特别地,当L = 0.5a且W / L = 0.8时,该PhC将退化为一维光栅PhC。与以前的作品相比,它可以表现出良好的全角度自准直行为,并具有相对更好的带宽(约19.98%)。由于制造过程相对方便,因此在实际应用中也具有优势。

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