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Wavefront Sensing for WFIRST with a Linear Optical Model

机译:具有线性光学模型的WFIRST的波前感测

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摘要

In this paper we develop methods to use a linear optical model to capture the field dependence of wavefront aberrations in a nonlinear optimization-based phase retrieval algorithm for image-based wavefront sensing. The linear optical model is generated from a ray trace model of the system and allows the system state to be described in terms of mechanical alignment parameters rather than wavefront coefficients. This approach allows joint optimization over images taken at different field points and does not require separate convergence of phase retrieval at individual field points. Because the algorithm exploits field diversity, multiple defocused images per field point are not required for robustness. Furthermore, because it is possible to simultaneously fit images of many stars over the field, it is not necessary to use a fixed defocus to achieve adequate signal-to-noise ratio despite having images with high dynamic range. This allows high performance wavefront sensing using in-focus science data. We applied this technique in a simulation model based on the Wide Field Infrared Survey Telescope (WFIRST) Intermediate Design Reference Mission (IDRM) imager using a linear optical model with 25 field points. We demonstrate sub-thousandth-wave wavefront sensing accuracy in the presence of noise and moderate undersampling for both monochromatic and polychromatic images using 25 high-SNR target stars. Using these high-quality wavefront sensing results, we are able to generate upsampled point-spread functions (PSFs) and use them to determine PSF ellipticity to high accuracy in order to reduce the systematic impact of aberrations on the accuracy of galactic ellipticity determination for weak-lensing science.
机译:在本文中,我们开发了一种方法,该方法使用线性光学模型来捕获基于图像的波前感测的基于非线性优化的相位检索算法中的波前像差的场相关性。线性光学模型是从系统的光线跟踪模型生成的,并允许根据机械对准参数而不是波前系数来描述系统状态。这种方法允许对在不同场点拍摄的图像进行联合优化,并且不需要在各个场点处分别进行相位检索的收敛。由于该算法利用场分集,因此每个场点都不需要多个散焦图像以提高鲁棒性。此外,因为可以同时拟合整个场上许多恒星的图像,所以尽管具有高动态范围的图像,也不必使用固定的散焦来获得足够的信噪比。这允许使用聚焦科学数据进行高性能波前感测。我们在具有25个场点的线性光学模型的广域红外勘测望远镜(WFIRST)中级设计参考任务(IDRM)成像器的仿真模型中应用了该技术。我们演示了使用25个高SNR目标星在单色图像和多色图像存在噪声和适度欠采样的情况下的千波波前传感精度。利用这些高质量的波前感测结果,我们能够生成上采样的点扩展函数(PSF),并使用它们来高精度确定PSF椭圆度,从而减少像差对弱微星系椭圆度确定精度的系统影响镜头科学。

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