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Metamaterial lens design.

机译:超材料镜片设计。

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摘要

Developments in nanotechnology and material science have produced optical materials with astonishing properties. Theory and experimentation have demonstrated that, among other properties, the law of refraction is reversed at an interface between a naturally occurring material and these so-called metamaterials. As the technology advances metamaterials have the potential to vastly impact the field of optical science.;In this study we provide a foundation for future work in the area of geometric optics and lens design with metamaterials. The concept of negative refraction is extended to derive a comprehensive set of first-order imaging principles as well as an exhaustive aberration theory to 4th order. Results demonstrate congruence with the classical theory; however, negative refraction introduces a host of novel properties. In terms of aberration theory, metamaterials present the lens designer with increased flexibility. A singlet can be bent to produce either positive or negative spherical aberration (regardless of its focal length), its contribution to coma can become independent of its conjugate factor, and its field curvature takes on the opposite sign of its focal power. This is shown to be advantageous in some designs such as a finite conjugate relay lens; however, in a wider field of view landscape lens we demonstrate a metamaterial's aberration properties may be detrimental.;This study presents the first comprehensive investigation of metamaterial lenses using industry standard lens design software. A formal design study evaluates the performance of doublet and triplet lenses operating at F/5 with a 100 mm focal length, a 20° half field of view, and specific geometric constraints. Computer aided optimization and performance evaluation provide experimental controls to remove designer-induced bias from the results. Positive-index lenses provide benchmarks for comparison to metamaterial systems subjected to identical design constraints. We find that idiosyncrasies in a metamaterial lens' aberration content can be exploited to produce imaging systems that are superior to their conventional counterparts. However, in some circumstances the reduced low-order aberration content in a metamaterial lens reduces the effectiveness of aberration balancing and stop shifting. Through a series of design experiments the relative advantages and challenges of using metamaterials in lens design are revealed.
机译:纳米技术和材料科学的发展产生了具有惊人特性的光学材料。理论和实验表明,除其他特性外,折射定律在天然材料与这些所谓的超材料之间的界面处相反。随着技术的进步,超材料可能会极大地影响光学科学领域。在本研究中,我们为几何光学和超材料透镜设计领域的未来工作奠定了基础。负折射的概念得到扩展,以导出一整套全面的一阶成像原理以及详尽的像差理论至四阶。结果表明与经典理论是一致的。但是,负折射引入了许多新特性。根据像差理论,超材料为镜片设计者提供了更大的灵活性。单线态可以弯曲以产生正或负的球差(无论其焦距如何),其对彗形象差的贡献可以独立于其共轭因子,并且其场曲呈其焦度的相反符号。在某些设计中,例如有限共轭中继透镜,这被证明是有利的。然而,在更广阔的视野中,景观镜头我们证明了超材料的像差特性可能是有害的。本研究首次使用行业标准的镜片设计软件对超材料镜片进行了全面的研究。一项正式的设计研究评估了在100mm焦距,20°半视场和特定几何约束下以F / 5操作的双合和三合透镜的性能。计算机辅助的优化和性能评估可提供实验控制,以从结果中消除设计者引起的偏差。正折射率镜头提供了基准,用于与受到相同设计约束的超材料系统进行比较。我们发现,可以利用超材料透镜像差内容中的特质来产生优于常规系统的成像系统。然而,在某些情况下,超材料透镜中降低的低阶像差含量会降低像差平衡的效率并停止平移。通过一系列设计实验,揭示了在镜片设计中使用超材料的相对优势和挑战。

著录项

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 245 p.
  • 总页数 245
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

  • 入库时间 2022-08-17 11:38:07

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