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Phase Diversity: math, methods, and prospects, including sequential diversity imaging

机译:相分集:数学,方法和前景,包括顺序分集成像

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Phase Diversity (PD) is an unconventional imaging technique which uses two or more distorted views of an object to perform wavefront sensing and/or to clarify the object. In 1990 it was used to remove the flaw in the Hubble Space Telescope. A major advantage of PD is that it needs no auxiliary hardware, like a guide star or a Shack-Hartmann wavefront sensor. We review a personal path in the discovery and the use of phase diversity. That path started in 1974 with the removal of raster lines in digital-based satellite images and has led to the real-time removal of aberrations in high-performance, ground-based telescopes, among other applications. PD could be used in cell phones which maintain good image quality by changing the camera's optics. The recorded video and the changes in the camera's optics are the necessary observations needed to improve the video, with software called sequential diversity imaging.
机译:相位分集(PD)是一种非常规的成像技术,它使用一个对象的两个或多个扭曲的视图来执行波前感测和/或澄清该对象。在1990年,它被用来消除哈勃太空望远镜的缺陷。 PD的一个主要优点是它不需要辅助硬件,例如引导星或Shack-Hartmann波前传感器。我们回顾了发现和使用相变的个人路径。这条道路始于1974年,当时消除了基于数字的卫星图像中的光栅线,并导致实时消除了高性能,地基望远镜以及其他应用中的像差。 PD可以用于通过更改相机的光学元件来保持良好图像质量的手机中。使用称为顺序分集成像的软件,记录的视频和相机光学元件的变化是改善视频所需的必要观察。

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