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Diffraction-limited imaging with partially redundant masks: I. Optical imaging of faint sources

机译:带有部分冗余掩模的衍射极限成像:I.微弱光源的光学成像

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摘要

In a recent paper [J. Opt. Soc. Am. A 9, 203 (1992)] the benefits of pupil apodization were examined for the near-infrared imaging of bright sources. In the current paper we extend these considerations to optical speckle imaging, in which photon noise rather than detector readout noise is important. We demonstrate that a one-dimensional pupil geometry (i.e., a thin slit) has several advantages over an unapodized aperture when faint sources are being observed through atmospheric turbulence. The use of a slit aperture does not decrease the signal-to-noise ratios of the power-spectrum and bispectrum measurements, and in many cases it increases them, despite the large reduction in signal level. The disadvantage of this apodization is a reduction in Fourier-plane coverage, which must be compensated for by observations with the slit aligned at several position angles. The performance of many of the current generation of photon-counting imaging detectors deteriorates at the high counting rates that can be experienced even when one is observing sources that are approaching the limiting magnitude of the speckle imaging technique. Under such conditions, we recommend the use of an apodized pupil, in contrast to the current preference for employing a neutral-density filter to reduce the detector count rate.
机译:在最近的一篇论文中[J.选择。 Soc。上午。 [9,203(1992)]研究了瞳孔变迹对明亮光源的近红外成像的好处。在当前的论文中,我们将这些考虑因素扩展到光学散斑成像,其中光子噪声而不是检测器读出噪声很重要。我们证明,当通过大气湍流观察到微弱的光源时,一维光瞳几何形状(即细缝)相对于未切趾光圈具有多个优势。使用狭缝孔径不会降低功率谱和双谱测量的信噪比,尽管信号电平大大降低,但在许多情况下,狭缝孔径会增大信噪比。这种变迹的缺点是减小了傅里叶平面的覆盖范围,必须通过将狭缝对准几个位置角进行观察来补偿。当前一代的许多光子计数成像检测器的性能在高计数率下都会降低,即使当人们观察到的光子接近散斑成像技术的极限幅度时,也可能会遇到这种情况。在这种情况下,与当前偏爱使用中性密度滤镜以减少探测器计数率的偏好相比,我们建议使用变迹瞳孔。

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