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首页> 外文期刊>Physica Status Solidi. A, Applied Research >Efficient focusing with a concave lens based on a photonic crystal with an unusual effective index of refraction
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Efficient focusing with a concave lens based on a photonic crystal with an unusual effective index of refraction

机译:利用基于光子晶体的凹透镜有效聚焦,该凹透镜具有非同寻常的有效折射率

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摘要

This work reports measurements with a concave lens based on a photonic crystal (PC) structure, which was designed to have an effective index of refraction n_(eff) < 1 or even < 0, and which is intended as a model system for future down-scaled optical elements based on PCs with an unusual effective index. The dimensions of the model PC were optimized for experiments in the microwave regime around 10 GHz. Calculations for a material with no losses allowed to select the wavelengths for which the lens could be expected to behave as a homogeneous meta-material with an unusual effective refractive index. The field distribution behind the lens was measured, and good focusing efficiencies for n_(eff)< 1 were found for perfect and strongly disturbed PC's in reasonable accordance with the predictions. The (down-scaled) model system investigated thus can serve as a reference for testing PC-based optical elements made from materials which so far elude reliable predictions, e.g. doped semiconductors, nano-rod assemblies, or meta-materials with anisotropic behavior.
机译:这项工作报告了使用基于光子晶体(PC)结构的凹透镜的测量结果,该凹透镜被设计为具有有效折射率n_(eff)<1或什至<0,并且打算用作将来下降的模型系统基于具有异常有效指数的PC的高倍光学元件。为在10 GHz附近的微波环境下进行实验而对PC的尺寸进行了优化。对于没有损耗的材料,可以进行计算以选择可以预期透镜表现为具有异常有效折射率的均质超材料的波长。测量了透镜后面的场分布,并根据预测合理地发现了n_(eff)<1的良好聚焦效率,可以完美且强烈干扰PC。因此,所研究的(缩小比例的)模型系统可以作为测试由PC制造的基于PC的光学元件的参考,该光学元件由迄今为止尚无法可靠预测的材料制成,例如:掺杂的半导体,纳米棒组件或具有各向异性行为的超材料。

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