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Performance enhancement of reflection-type magnetophotonic crystals backed with single-negative magnetic metamaterials

机译:具有单负磁性超材料的反射型磁光子晶体的性能增强

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Herein we report the potential of polar bi-gyrotropic single-negative magnetic metamaterials to act simultaneously as a reflector and a magnetic rotator layer. We have studied such materials that their epsilon and mu are in the form of non-diagonal tensors (such medium is called as bi-gyrotropic). The reflectance and Kerr rotation responses have been simulated for both epsilon-negative and mu-negative types for different permittivity and permeability values. We have also examined the potential of such materials as simultaneous the reflector and the rotator layer in magnetophotonic crystal (MPC) structures. Results show that using these materials as the mentioned role can increase both Kerr rotation and reflectance, simultaneously. Additionally, a blue/red shift has occurred in MPCs containing epsilon-negative/mu-negative medium rather than the structure without them.
机译:在这里,我们报告了极性双回旋单负磁超材料同时充当反射器和磁旋转层的潜力。我们已经研究了这样的材料,它们的ε和μ呈非对角张量形式(这种介质称为双回旋)。对于不同介电常数和磁导率值的ε负和mu负类型的反射率和Kerr旋转响应均已进行了模拟。我们还研究了磁光子晶体(MPC)结构中同时反射器和旋转器层等材料的潜力。结果表明,使用这些材料作为上述角色可以同时增加Kerr旋转和反射率。另外,在含有ε-阴性/ mu-阴性培养基而不是不含它们的结构的MPC中发生了蓝/红移位。

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