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A wavefront sensor-driven variable-geometry pupil for ground-based aperture synthesis imaging

机译:波前传感器驱动的可变几何瞳孔,用于地面孔径合成成像

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Idescribe a variable-geometry pupil (VGP) to increase image resolution for ground-based near-IR and optical imaging. In this scheme, a curvature-type wavefront snesor provides an estimate of the wavefront curvature to the controller of a high-resolution spatial light modulator (SLM) or micro-electromechanical (MEM) mirror, positioned at an image of the telescope pupil. This optical element, the VGP, passes or reflects the incident beam only where the wavefront phase is sufficikently smooth, viz, where the curvature is sufficiently low. Using a computer simulation, I show the VGP can sharpen and smooth the long-exposure PSF and increase the OTF SNR for tilt-only and low-order AO systems, allowing higher resolution and more stable deconvolution with dimmer AO guidestars.
机译:描述一个可变几何光瞳(VGP),以提高基于地面的近红外和光学成像的图像分辨率。在此方案中,曲率型波阵面传感器向位于望远镜瞳孔图像处的高分辨率空间光调制器(SLM)或微机电(MEM)镜的控制器提供对波阵面曲率的估计。该光学元件VGP仅在波前相位足够光滑(即曲率足够低)的情况下才通过或反射入射光束。通过计算机模拟,我证明了VGP可以锐化和平滑长时间曝光的PSF,并提高仅倾斜和低阶AO系统的OTF SNR,从而可以通过调光AO导星实现更高的分辨率和更稳定的反卷积。

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