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Complete photonic band gaps in supercell photonic crystals

机译:完整的光子带空隙,在超级光子光子晶体中

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We develop a class of supercell photonic crystals supporting complete photonic band gaps based on breaking spatial symmetries of the underlying primitive photonic crystal. One member of this class based on a twodimensional honeycomb structure supports a complete band gap for an index-contrast ratio as low as n_(high)/n_(low) = 2.1, the lowest index contrast known to support a complete band gap for a two-dimensional (2D) photonic crystal. This same design principle is used to develop the first photonic crystal slab that supports a band gap for dual-polarization visible light. The complete band gaps found in such supercell photonic crystals do not necessarily monotonically increase as the index contrast in the system is increased.
机译:我们开发了一类基于断开基元光子晶体的空间对称的完全光子带间隙的一类超级电池光子晶体。 基于TwoDimension蜂窝结构的该类的一个成员支持一个完整的带隙,用于指数对比度,与N_(高)/ n_(低)= 2.1,所知的最低指标对比度,以支持一个完整的带隙 二维(2D)光子晶体。 该相同的设计原理用于开发第一光子晶板,其支持用于双极化可见光的带隙。 随着系统中的折射率对比度增加,在这种超胶片光子晶体中发现的完整带隙不一定会单调增加。

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