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Magneto-photonic crystal microcavities based on magnetic nanoparticles embedded in Silica matrix

机译:基于嵌入二氧化硅基质中的磁性纳米粒子的磁光子晶体微腔

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摘要

Using the three-dimensional finite difference time domain method (3D FDTD) with perfectly matched layers (PML), optical and magneto-optical properties of two-dimensional magneto-photonic crystals micro-cavity is studied. This micro-cavity is fabricated by SiO2/ZrO2 or SiO2/TiO2 matrix doped with magnetic nanoparticles, in which the refractive index varied in the range of 1.51-1.58. We demonstrate that the Q factor for the designed cavity increases as the refractive index increases, and we find that the Q factor decreases as the volume fraction VF% due to off-diagonal elements increases. These magnetic microcavities may serve as a fundamental structure in a variety of ultra compact magneto photonic devices such as optical isolators, circulators and modulators in the future.
机译:使用具有完美匹配层(PML)的三维有限差分时域方法(3D FDTD),研究了二维磁光子晶体微腔的光学和磁光特性。该微腔由掺杂有磁性纳米粒子的SiO2 / ZrO2或SiO2 / TiO2基体制成,其折射率在1.51-1.58范围内变化。我们证明设计的腔体的Q因子随折射率的增加而增加,并且我们发现Q因子随非对角元素的体积分数VF%的增加而减小。这些磁性微腔在将来可以用作各种超紧凑型磁光子装置的基本结构,例如光隔离器,循环器和调制器。

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