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Simultaneous multi-frequency topological edge modes between one-dimensional photonic crystals

机译:一维光子晶体之间的同时多频拓扑边缘模式

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We show theoretically that, in the limit of weak dispersion, one-dimensional binary centrosymmetric photonic crystals can support topological edge modes in all photonic bandgaps. By analyzing their bulk band topology, these "harmonic" topological edge modes can be designed in a way that they exist at all photonic bandgaps opened at the center of the Brillouin zone, at all gaps opened at the zone boundaries, or both. The results may suggest a new approach to achieve robust multi-frequency coupled modes for applications in nonlinear photonics, such as frequency upconversion. (C) 2016 Optical Society of America
机译:我们从理论上证明,在弱色散的限制下,一维二元中心对称光子晶体可以在所有光子带隙中支持拓扑边缘模式。通过分析它们的体带拓扑,可以设计这些“谐波”拓扑边缘模式,使其存在于在布里渊区中心打开的所有光子带隙,在区边界打开的所有缝隙或同时存在于两者。结果可能表明一种新的方法可以实现鲁棒的多频耦合模式,用于非线性光子学中的应用,例如频率上变频。 (C)2016美国眼镜学会

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