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Interfacial structure designs with impedance-matching for ideal broadband antireflections

机译:具有阻抗匹配的界面结构设计,可实现理想的宽带抗反射

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摘要

This work focuses on the ideal broadband antireflection structure designs based on the impedance-matching and the effective medium theory. Graded refractive index profiles that satisfy the impedance-matching condition between two media result in zero reflection over the entire wavelength range. Our studies found that both the thickness of the graded refractive index layer and the refractive indices of the adjacent two media determine the dispersion properties of the graded refractive index profiles. Specifically, we case-studied the dispersion properties of the gradient refractive index profiles for silicon, GaN, and glass substrates. The effective medium theory was utilized to design interface structures that match the ideal graded refractive index profiles. The accuracy of this design approach was assessed by comparing the filling factor as a function of thickness by using effective medium theory with zeroth-order and second-order approximations. A novel interface structure with concaved-dome geometrical shape was studied as a new type of impedance-matching antireflection structure (concaved-dome impedance-matching Ⅱ), which has the advantage of reduced effective feature size and thus can better match the ideal graded refractive index profiles by applying the effective medium theory more accurately. The interface reflection properties of the impedance-matching Ⅱ structure were computed via a three-dimensional finite difference time domain method. The interface reflections were compared with that of a conventional flat surface, a previously proposed micro-dome structure, and a traditional impedance-matching structure (impedance-matching Ⅰ), which revealed that the concaved-dome impedance-matching Ⅱ structure has the best antireflection performance over a broad wavelength range and wide incidence angles.
机译:这项工作着重于基于阻抗匹配和有效介质理论的理想宽带减反射结构设计。满足两种介质之间的阻抗匹配条件的渐变折射率分布会导致整个波长范围内的零反射。我们的研究发现,渐变折射率层的厚度和相邻两种介质的折射率都决定了渐变折射率分布的色散特性。具体来说,我们对硅,GaN和玻璃基板的梯度折射率分布的色散特性进行了案例研究。利用有效介质理论来设计与理想渐变折射率分布相匹配的界面结构。通过使用零阶和二阶近似的有效介质理论,通过比较填充因子与厚度的函数,评估了该设计方法的准确性。研究了一种新型的凹圆顶几何形状的界面结构作为新型的阻抗匹配抗反射结构(凹圆顶阻抗匹配Ⅱ),具有减小有效特征尺寸,从而更好地匹配理想渐变折射率的优点。通过更有效地应用有效介质理论来确定指标分布。通过三维有限差分时域方法计算了阻抗匹配Ⅱ结构的界面反射特性。将界面反射与常规平面,先前提出的微圆顶结构和传统阻抗匹配结构(阻抗匹配Ⅰ)进行了比较,结果表明凹圆顶阻抗匹配Ⅱ结构具有最佳的反射率。宽波长范围和宽入射角的抗反射性能。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第24期|243103.1-243103.10|共10页
  • 作者

    Lu Han; Hongping Zhao;

  • 作者单位

    Department of Electrical Engineering and Computer Science, Case Western Reserve University, Cleveland, Ohio 44106, USA;

    Department of Electrical Engineering and Computer Science, Case Western Reserve University, Cleveland, Ohio 44106, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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