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Holographic Fabrication of Designed Functional Defect Lines in Photonic Crystal Lattice Using a Spatial Light Modulator

机译:使用空间光调制器在光子晶体晶格中设计功能缺陷线的全息制作。

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摘要

We report the holographic fabrication of designed defect lines in photonic crystal lattices through phase engineering using a spatial light modulator (SLM). The diffracted beams from the SLM not only carry the defect’s content but also the defect related phase-shifting information. The phase-shifting induced lattice shifting in photonic lattices around the defects in three-beam interference is less than the one produced by five-beam interference due to the alternating shifting in lattice in three beam interference. By designing the defect line at a 45 degree orientation and using three-beam interference, the defect orientation can be aligned with the background photonic lattice, and the shifting is only in one side of the defect line, in agreement with the theory. Finally, a new design for the integration of functional defect lines in a background phase pattern reduces the relative phase shift of the defect and utilizes the different diffraction efficiency between the defect line and background phase pattern. We demonstrate that the desired and functional defect lattice can be registered into the background lattice through the direct imaging of designed phase patterns.
机译:我们报告了通过使用空间光调制器(SLM)的相工程在光子晶体晶格中设计缺陷线的全息制造。来自SLM的衍射光束不仅携带缺陷的内容,而且携带缺陷相关的相移信息。由于三光束干涉中晶格的交替移动,围绕三光束干涉中的缺陷的光子晶格中的相移感应晶格位移小于五光束干涉所产生的晶格位移。通过将缺陷线设计为45度方向并使用三束干涉,可以使缺陷方向与背景光子晶格对齐,并且移动仅在缺陷线的一侧进行,与理论相符。最后,用于在背景相图案中集成功能缺陷线的新设计减少了缺陷的相对相移,并利用了缺陷线与背景相图案之间的不同衍射效率。我们证明,可以通过直接成像设计的相位模式将所需的功能缺陷晶格注册到背景晶格中。

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