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Numerical propagator through PIAA optics

机译:通过PIAA光学器的数值传播者

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摘要

In this communication we address two outstanding issues pertaining the modeling of PIAA coronagraphs, accurate numerical propagation of edge effects and fast propagation of mid spatial frequencies for wavefront control. In order to solve them, we first derive a quadratic approximation of the Huygens wavelets that allows us to develop an angular spectrum propagator for pupil remapping. Using this result we introduce an independent method to verify the ultimate contrast floor, due to edge propagation effects, of PIAA units currently being -tested in various testbeds. We then delve into the details of a novel fast algorithm, based on the recognition that, angular spectrum computations with a pre-apodised system are computationally light. When used for the propagation of mid spatial frequencies, 'such a fast propagator will ultimately allow us to develop robust wavefront control algorithms with DMs located before the pupil remapping mirrors.
机译:在这一沟通中,我们解决了有关PIAA僵尸建模的两个突出问题,准确的边缘效应的数值传播,以及波前控制的中间空间频率的快速传播。为了解决它们,我们首先推导出惠格斯小波的二次逼近,使我们能够开发用于瞳孔重新映射的角度频谱传播者。使用此结果,我们介绍了一种独立的方法,以验证当前在各种测试平台中的边缘传播效果而导致的最终对比度底板。然后,我们基于识别,进入新型快速算法的细节,即,具有预复制系统的角频谱计算是计算的光。当用于中段空间频率的传播时,这种快速传播器最终将允许我们使用位于瞳孔重复镜之前的DMS开发强大的波前控制算法。

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