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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Enhancement of magneto-optical responses in adjustable one-dimensional magnetophotonic crystals
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Enhancement of magneto-optical responses in adjustable one-dimensional magnetophotonic crystals

机译:可调节一维磁芯晶体中磁光响应的增强

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We investigated the one-dimensional magnetophotonic crystals (1D - MPCs) created by magnetic defect layer sandwiched between dielectric photonic crystals (PCs) utilizing the 4 x 4 transfer matrix method (TMM). To simultaneously achieve high transmittance and large magneto-optical (MO) Faraday effect, we changed the repetition numbers of PCs and the thickness of defect layers. Using finite element method (FEM), we simulated the distribution of electric field in the length of structures. The efficient localization of light in the vicinity of defect layer led to MO responses enhancement and resonant transmittance inside the photonic band gap (PBG). For single cavity structure, the MO responses were enhanced for symmetric spatial configuration. By increasing the number of defect layer, the MO responses of MPCs were improved. The transmittance and Faraday rotation (FR) for MO multilayer structures having six cavities were obtained T = 0.92 and theta(F) = 44.5 degrees respectively. This is a proper case to design MO isolator applied in optical telecommunications.
机译:我们研究了利用4×4转移矩阵法(TMM)夹在电介质光子晶体(PCS)之间夹在电介质光子晶体(PC)之间夹在电介质光子晶体(PC)之间产生的一维磁光电晶体(1D-MPC)。为了同时实现高透射率和大磁光(MO)法拉第效应,我们改变了PC的重复数量和缺陷层的厚度。使用有限元方法(FEM),我们模拟了结构长度的电场分布。缺陷层附近的光的有效定位LED在光子带隙(PBG)内部的Mo响应增强和共振透射率。对于单腔结构,对对称空间配置提高了Mo响应。通过增加缺陷层的数量,改善了MPC的MO响应。获得具有六个空腔的MO多层结构的透射率和法拉第旋转(FR),分别获得六个空腔,分别为θ(f)= 44.5度。这是设计在光电信中应用Mo隔离器的适当情况。

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