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Five-beam Holographic Fabrication of 3D Photonic Crystal Templates Using a Single Diffractive Optical Element

机译:使用单个衍射光学元件的3D光子晶体模板的五光束全息制造

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In this paper we demonstrate an approach for laser holographic manufacturing of three-dimensional photonic lattice structures using a single specially designed, diffraction optical element mask. The mask is fabricated by recording gratings in a photosensitive polymer using a two-beam interference method and has four diffraction gratings in the sample plane, with a same distance from the opening center and oriented four-fold symmetrically. Four first-order diffracted beams by the gratings and one non-diffracted central beam overlap and form three-dimensional interference pattern. The phase of one side beam is delayed by inserting a thin piece of microscope glass slide into the beam. By rotating the glass slide thus tuning the phase of the side beam, the five beam interference pattern changes from facecenter tetragonal symmetry into desired diamond-like lattice symmetry. The three-dimensional interference pattern is recorded in a photosensitive polymer, showing the phase tuning related changes of photonic lattice structures. Combing an amplitude mask with the phase mask by putting the amplitude mask in the central opening of the diffraction optical element mask, line defects are produced within the photonic crystal template.
机译:在本文中,我们展示了一种使用单个专门设计的衍射光学元件掩模的三维光子晶格结构的激光全息制造方法。通过使用双光束干涉方法记录光敏聚合物中的光栅来制造掩模,并在样品平面中具有四个衍射光栅,距开口中心相同的距离并对对称定向四倍。通过光栅和一个非衍射中心光束的四个一阶衍射光束重叠并形成三维干涉图案。通过将薄的显微镜玻璃载玻片插入到光束中,延迟了一个侧梁的相位。通过旋转玻璃载玻片,从而调节侧梁的相位,五个光束干涉图案从外观四边形对称变为所需的菱形样格子对称。三维干涉图案被记录在光敏聚合物中,示出了光子晶格结构的相位调谐变化。通过将幅度掩模放入衍射光学元件掩模的中心开口中,在光子晶体模板内产生幅度掩模,用相位掩模梳地振幅掩模。

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