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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Photonic-crystal slabs with a triangular lattice of triangular holes investigated using a guided-mode expansion method
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Photonic-crystal slabs with a triangular lattice of triangular holes investigated using a guided-mode expansion method

机译:用导模扩展法研究具有三角孔三角晶格的光子晶体平板

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摘要

According to a recent proposal [S. Takayama et ah, Appl. Phys. Lett. 87, 061107 (2005)], the triangular lattice of triangular air holes may allow us to achieve a complete photonic band gap in two-dimensional photonic crystal slabs. In this work we present a systematic theoretical study of this photonic lattice in a high-index membrane, and a comparison with the conventional triangular lattice of circular holes, by means of the guided-mode expansion method whose detailed formulation is described here. Photonic mode dispersion below and above the light line, gap maps, and intrinsic diffraction losses of quasiguided modes are calculated for the periodic lattice as well as for line and point defects defined therein. The main results are summarized as follows: (ⅰ) The triangular lattice of triangular holes does indeed have a complete photonic band gap for the fundamental guided mode, but the useful region is generally limited by the presence of second-order waveguide modes; (ⅱ) the lattice may support the usual photonic band gap for even modes (quasi-TE polarization) and several band gaps for odd modes (quasi-TM polarization), which could be tuned in order to achieve doubly resonant frequency conversion between an even mode at the fundamental frequency and an odd mode at the second-harmonic frequency; (ⅲ) diffraction losses of quasiguided modes in the triangular lattices with circular and triangular holes, and in line-defect waveguides or point-defect cavities based on these geometries, are comparable. The results point to the interest of the triangular lattice of triangular holes for nonlinear optics, and show the usefulness of the guided-mode expansion method for calculating photonic band dispersion and diffraction losses, especially for higher-lying photonic modes.
机译:根据最近的提案[S.高山等人,应用。物理来吧87,061107(2005)],三角形气孔的三角形晶格可以使我们在二维光子晶体平板中获得完整的光子带隙。在这项工作中,我们介绍了一种高折射率膜中的光子晶格的系统理论研究,并通过导模扩展方法与常规的圆孔三角晶格进行了比较,其详细公式描述如下。针对周期晶格以及其中定义的线和点缺陷,计算了光线上下的光子模式色散,间隙图和准引导模式的本征衍射损耗。主要结果概括如下:(ⅰ)对于基本导模,三角形孔的三角形晶格确实具有完整的光子带隙,但有用的区域通常受到二阶波导模式的限制; (ⅱ)晶格可以支持偶数模式(准TE极化)的常规光子带隙和奇数模式(准TM极化)的几个带隙,可以对其进行调整以实现偶数之间的双共振频率转换在基频处的模式和在第二谐波频率处的奇数模式; (ⅲ)在具有圆形和三角形孔的三角形晶格中,以及基于这些几何形状的线缺陷波导或点缺陷腔中,准引导模的衍射损耗是可比的。结果表明,非线性光学对三角孔的三角晶格感兴趣,并且表明了导模扩展方法在计算光子带的色散和衍射损耗(尤其是在较高位置的光子模式)中的有用性。

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