Design of High-Performance Optical Systems

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课程简介

University of Colorado Boulder

课程大纲

This module introduces the many types and causes of monochromatic imperfections in optical systems. We begin with the mathematical background of the causes of aberrations, then introduce a number of common aberrations so that you may recognize them in your own systems.

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This course can also be taken for academic credit as ECEA 5602, part of CU Boulder’s Master of Science in Electrical Engineering degree. Optical instruments are how we see the world, from corrective eyewear to medical endoscopes to cell phone cameras to orbiting telescopes. This course extends what you have learned about first-order, paraxial system design and optical resolution and efficiency with the introduction to real lenses and their imperfections. We begin with a description of how different wavelengths propagate through systems, then move on to aberrations that appear with high angle, non-paraxial systems and how to correct for those problems. The course wraps up with a discussion of optical components beyond lenses and an excellent example of a high-performance optical system – the human eye. The mathematical tools required for analysis of high-performance systems are complicated enough that this course will rely more heavily on OpticStudio by Zemax. This will allow students to analyze systems that are too complicated for the simple analysis thus far introduced in this set of courses.

高性能光学系统的设计:本课程也可作为ECEA 5602的学分,该课程是CU Boulder的电气工程理学硕士学位的一部分。 从矫正眼镜到医疗内窥镜再到手机相机再到绕行望远镜,光学仪器是我们观察世界的方式。本课程通过介绍真实的镜头及其不完美之处,扩展了您对一阶,近轴系统设计以及光学分辨率和效率的了解。我们首先描述不同波长如何在系统中传播,然后继续讨论在大角度,非傍轴系统中出现的像差以及如何解决这些问题。该课程包括对透镜以外的光学组件的讨论,以及高性能光学系统(人眼)的典范。高性能系统分析所需的数学工具非常复杂,因此本课程将在很大程度上依赖Zemax的OpticStudio。这将使学生能够分析对于迄今为止在这套课程中介绍的简单分析而言过于复杂的系统。

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