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High-contrast infrared polymer photonic crystals fabricated by direct laser writing

机译:通过直接激光书写制造的高对比度红外聚合物光子晶体

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摘要

One-dimensional (1D) photonic crystals (PCs) were fabricated by three-dimensional (3D) direct laser writing using a single polymer to obtain reflectance values approaching that o f a gold reference in the near-infrared (near-IR) spectral range. The PCs are composed of alternating compact and low-density polymer layers that provide the necessary periodic variation of the refractive index. The low-density polymer layers are composed of subwavelength-sized pillars which simultaneously serve as a scaffold while also providing refractive index contrast to the adjacent compact polymer layers. The Bruggemann effective medium theory and stratified-layer optical-model calculated reflectivity profiles were employed to optimize the PC's design to operate at a desired wavelength of 1.55 mu m. After the fabrication, the PC's structure was compared to the nominal geometry using complementary scanning electron microscopy and optical microscopy micrographs identifying a true-to-form fabrication. The performance of the PCs was investigated experimentally using FTIR reflection and transmission measurements. A good agreement between stratified-layer optical-model calculated and measured data is observed. Therefore, we demonstrate the ease of predictive design and fabrication of highly efficient ID PCs for the IR spectral range using 3D direct laser writing of a single polymer. (C) 2018 Optical Society of America
机译:一维(1D)光子晶体(PCS)由三维(3D)直射写入使用单个聚合物制造,以获得接近近红外(近IR)光谱范围的O F A Gold参考的反射值。 PC由交替的紧凑型和低密度聚合物层组成,其提供折射率的必要周期性变化。低密度聚合物层由亚波长尺寸的柱组成,该柱同时用作支架,同时也提供与相邻的致密聚合物层对比的折射率。采用Bruggemann有效的介​​质理论和分层层光学模型计算的反射型轮廓来优化PC的设计以在1.55μm的所需波长下操作。制造后,使用互补扫描电子显微镜和光学显微镜显微照片与标称几何形状进行比较PC的结构,识别真正的制造。使用FTIR反射和传输测量实验研究了PC的性能。观察到计算和测量数据的分层层光学模型之间的良好一致性。因此,我们使用单个聚合物的3D直接激光写入展示用于IR光谱范围的高效ID PC的可容易的预测设计和制造。 (c)2018年光学学会

著录项

  • 来源
    《Optics Letters》 |2018年第19期|共4页
  • 作者单位

    Univ North Carolina Charlotte Dept Phys &

    Opt Sci 9201 Univ City Blvd Charlotte NC 28223 USA;

    Univ North Carolina Charlotte Dept Phys &

    Opt Sci 9201 Univ City Blvd Charlotte NC 28223 USA;

    Univ North Carolina Charlotte Dept Phys &

    Opt Sci 9201 Univ City Blvd Charlotte NC 28223 USA;

    UCONEC 1138 25th St Southeast Hickory NC 28602 USA;

    Coming Opt Commun LLC 800 17th St NW Hickory NC 28601 USA;

    Univ North Carolina Charlotte Dept Phys &

    Opt Sci 9201 Univ City Blvd Charlotte NC 28223 USA;

    Univ North Carolina Charlotte Dept Phys &

    Opt Sci 9201 Univ City Blvd Charlotte NC 28223 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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