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Control of Photonic Spectrum of a Bragg Microresonator with a Magnetoactive Layer

机译:用磁热层控制布拉格微生物的光子光谱

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Transmission spectra of a microresonator structure with Bragg mirrors are obtained. A quarter-wave plate made of extrinsic semiconductor is installed in the working cavity. The properties of such a semiconductor can be controlled using external magnetic field. It is shown that variations in the external field, cavity size, and position of the active layer lead to modification of the photonic spectrum of the TM and TE eigenwaves. Splitting of a defect mode at the center of the band gap into two modes takes place when the active layer is placed in the cavity. The evolution of such modes caused by variations in the magnetic field is studied. Dependences of the size and number of stopbands on the structural parameters, frequency, and field are determined, and maps of band gaps are obtained.
机译:获得具有布拉格镜的微小器镜结构的透射光谱。 由外部半导体制成的四分之一波片安装在工作腔中。 可以使用外部磁场来控制这种半导体的性质。 结果表明,有源层的外部场,腔尺寸和位置的变化导致TM和TE eigeNwaves的光子谱的修改。 在将有源层放置在腔中时,将在带隙中心处的缺陷模式分成两种模式。 研究了由磁场变化引起的这种模式的演变。 确定了结构参数,频率和字段上的阻带的大小和数量的依赖性,并且获得带隙的映射。

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