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Effects of Atmospheric Turbulence on the Imaging Performance of Optical System

机译:大气湍流对光学系统成像性能的影响

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Turbulent effects are very complicated and still not entirely understood. Light waves from an astronomical object are distorted as they pass through the atmosphere. The refractive index fluctuations in the turbulent atmosphere induce an optical path difference (OPD) between different parts of the wavefront, distorted wavefronts produce low-quality images and degrade the image beyond the diffraction limit.In this paper the image degradation due to 2-D Gaussian atmospheric turbulence is considered in terms of the point spread function (PSF), and Strehl ratio as an image quality criteria for imaging systems with different apertures using the pupil function teqneque. A general expression for the degraded PSF in the case of circular and square apertures (with half diagonal={formula}, and 1) diffraction limited and defocused optical system is considered. Based on the derived formula, the effect of the Gaussian atmospheric turbulence on circular and square pupils has been studied with details. Numerical results show that the performance of optical systems with square aperture is more efficient at high levels of atmospheric turbulence than the other apertures.
机译:湍流的影响是非常复杂的,但仍不能完全了解。当它们通过大气从天体光波被扭曲。在湍流大气的折射率的波动引起的波阵面的不同部分之间的光程差(OPD),畸变波前产生低质量的图像并降低超出衍射图像limit.In此纸张上的图像劣化,由于2-d高斯大气湍流中的点扩散函数(PSF)的方面考虑,并且Strehl比作为图像质量标准,用于使用光瞳函数teqneque不同孔径的成像系统。在圆形和方形孔的情况下,劣化的PSF的一般表达式(具有半对角线= {公式},和1)的衍射限制,并且散焦光学系统被考虑。基于所得到的公式,对圆形和方形瞳孔高斯大气湍流的效果进行了研究用的信息。数值计算结果表明,与正方形孔径光学系统的性能是在高水平的大气湍流比其他孔的更有效。

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