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Theory and application of differential OTF (dOTF) wavefront sensing

机译:差分OTF(dOTF)波前传感的理论与应用

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A new image-based technique for measuring the complex field in the pupil of a telescope is presented. The simplest form of the method uses two point source images, one with a small modification introduced in the pupil. The processing of the images is very simple and non-iterative. The method is based on a specially-defined complex functional derivative of the OTF. This derivative is approximated empirically by the difference between the Fourier transforms of the two PSFs: the differential OTF or "dOTF." Due to the complex conjugate in the OTF, the dOTF includes two complex images of the complex pupil field overlapping at the point of pupil modification. By placing the modification near the edge of the pupil, the overlap region can be minimized. The overlap region is typically small, but can be eliminated altogether by using a second modification and a third image. The technique can use broadband light, but the result incurs a radial blurring proportional to the fractional bandwidth. This is also easily dealt with using another modification and image. Although the dOTF a poor match for high frame rate astronomical AO applications, it has many potential uses. Optical shop testing, non-common-path wavefront error estimation, alignment and vignetting, telescope segment phasing, general imaging system diagnostics and testing applications are considered. More advanced applications are possible with extensions to the theory, such as extended incoherence background scenes as sources instead of stars, and 3-D tomographic aberration and transmission mapping open up many new applications.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:提出了一种新的基于图像的技术,用于测量望远镜瞳孔中的复杂视场。该方法最简单的形式是使用两个点源图像,其中一个在瞳孔中进行了少量修改。图像的处理非常简单且非迭代。该方法基于OTF的特殊定义的复数函数导数。该导数通过两个PSF(差分OTF或“ dOTF”)的Fourier变换之间的差异凭经验近似。由于OTF中存在复杂的共轭,因此dOTF包括在瞳孔修改点重叠的两个复杂瞳孔场的复杂图像。通过将变体放置在光瞳边缘附近,可以将重叠区域最小化。重叠区域通常很小,但是可以通过使用第二修改和第三图像将其完全消除。该技术可以使用宽带光,但是结果导致与分数带宽成比例的径向模糊。使用其他修改和图像也可以轻松解决此问题。尽管dOTF在高帧率天文AO应用方面不甚理想,但它具有许多潜在用途。考虑了眼镜店测试,非共路径波前误差估计,对准和渐晕,望远镜分段定相,一般成像系统诊断和测试应用。随着理论的扩展,更高级的应用是可能的,例如扩展的非相干背景场景作为源而不是恒星,以及3-D断层像差和透射映射开辟了许多新应用。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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