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Artificially structured graded index materials for designing of functional photonic elements

机译:用于功能光子元件设计的人工结构渐变折射率材料

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It is feasible to design a graded index medium if the parameters (structural and material) of the two or even three dimensional photonic crystals are appropriately reconfigured. These structures are known as graded index photonic crystals. By engineering the index gradient power along both the radial and axial directions, different effective index profiles can be attained. As a result, variety of light manipulations including focusing, guiding and mode converters can be achieved. The discrete optical elements with curved surfaces and small focusing power can be replaced by the counterpart of more compact and effective planar devices that are based on the graded index medium.
机译:如果二维或什至三维光子晶体的参数(结构和材料)被适当地重新配置,则设计梯度折射率介质是可行的。这些结构称为梯度折射率光子晶体。通过沿径向和轴向方向设计折射率梯度功率,可以获得不同的有效折射率分布。结果,可以实现包括聚焦,引导和模式转换器在内的各种光控制。具有弯曲表面和小的聚焦能力的分立光学元件可以由基于渐变折射率介质的更紧凑,更有效的平面设备的同类产品替代。

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