论文标题
沉浸式分级索引光学:理论,设计和原型
Immersion graded index optics: theory, design, and prototypes
论文作者
论文摘要
浸入光学元件可以通过利用光的亮度与无损光学系统中的折射率的平方成正比的事实来创建具有提高光学浓度和耦合的系统。在理论,模拟和实验方面,描述了不需要跟踪来源的浸入分级索引光学集中器。我们介绍了遵循帕累托功能的广义设计指南方程,可用于根据浓度,折射率,高度和效率的应用要求来创建各种沉浸式分级索引光学器件。我们提出了玻璃和聚合物制造技术,用于创建具有较大的折射率范围(折射率比)^2的宽带透明分级指数材料,即〜2,超越了自然界或光学行业所看到的。原型显示出3倍的光浓度,效率超过90%。我们通过功能原型报告,分级折射率浓度器的性能接近理论最大极限,并引入简单,廉价,设计且可扩展的制造技术以实现其实现。
Immersion optics enable creation of systems with improved optical concentration and coupling by taking advantage of the fact that the luminance of light is proportional to the square of the refractive index in a lossless optical system. Immersion graded index optical concentrators, that do not need to track the source, are described in terms of theory, simulations, and experiments. We introduce a generalized design guide equation which follows the Pareto function and can be used to create various immersion graded index optics depending on the application requirements of concentration, refractive index, height, and efficiency. We present glass and polymer fabrication techniques for creating broadband transparent graded index materials with large refractive index ranges, (refractive index ratio)^2 of ~2, going many fold beyond what is seen in nature or the optics industry. The prototypes demonstrate 3x optical concentration with over 90% efficiency. We report via functional prototypes that graded-index-lens concentrators perform close to the theoretical maximum limit and we introduce simple, inexpensive, design-flexible, and scalable fabrication techniques for their implementation.