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Transverse magnetic field impact on waveguide modes of photonic crystals

机译:横向磁场对光子晶体波导模式的影响

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This Letter presents a theoretical and experimental study of waveguide modes of one-dimensional magneto-photonic crystals magnetized in the in-plane direction. It is shown that the propagation constants of the TM waveguide modes are sensitive to the transverse magnetization and the spectrum of the transverse magneto-optical Kerr effect has resonant features at mode excitation frequencies. Two types of structures are considered: a non-magnetic photonic crystal with an additional magnetic layer on top and a magneto-photonic crystal with a magnetic layer within each period. We found that the magneto-optical non-reciprocity effect is greater in the first case: it has a magnitude of delta similar to 10(-4), while the second structure type demonstrates delta similar to 10(-5) only, due to the higher asymmetry of the claddings of the magnetic layer. Experimental observations show resonant features in the optical and magneto-optical Kerr effect spectra. The measured dispersion properties are in good agreement with the theoretical predictions. An amplitude of light intensity modulation of up to 2.5% was observed for waveguide mode excitation within the magnetic top layer of the non-magnetic photonic crystal structure. The presented theoretical approach may be utilized for the design of magneto-optical sensors and modulators requiring pre-determined spectral features. (C) 2016 Optical Society of America
机译:这封信提出了在平面内磁化的一维磁光子晶体的波导模式的理论和实验研究。结果表明,TM波导模的传播常数对横向磁化敏感,横向磁光克尔效应的频谱在模激发频率处具有共振特征。考虑两种类型的结构:在每个周期内在顶部具有附加磁性层的非磁性光子晶体和在其内部具有磁性层的磁光子晶体。我们发现,在第一种情况下,磁光非互易性效应更大:其幅值与10(-4)相似,而第二种结构类型的Δ仅与10(-5)相似,这是由于磁性层的包层具有更高的不对称性。实验观察表明,在光学和磁光学克尔效应谱中存在共振特征。测得的分散性能与理论预测吻合良好。对于非磁性光子晶体结构的磁性顶层内的波导模式激发,观察到高达2.5%的光强度调制幅度。所提出的理论方法可以用于需要预定频谱特征的磁光传感器和调制器的设计。 (C)2016美国眼镜学会

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