Kang Dongyel, Clarkson Eric, Milster Tom D
College of Optical Science, University of Arizona, 1630 E. University Boulevard, Tucson, Arizona 85721, USA.
Opt Express. 2009 Mar 2;17(5):3084-100. doi: 10.1364/oe.17.003084.
Optical aberration effects up to the second moment of Gaussian laser speckle are theoretically investigated for both partially and fully developed speckle. In the development, a plane-wave illuminated diffuser generates a phase-perturbed random field in the object plane that creates speckle in the image plane. Theoretical derivations show that image field statistics are generally non-circular Gaussian due to aberrations. Speckle statistics are not affected by odd-functional aberrations, such as coma, and dependency of aberrations is asymptotically ignorable for very weak or strong diffusers. Furthermore, Gaussian speckle contrast as a functional of optical aberrations exhibits a stationary point for the aberration free condition, where apparently contrast does not achieve a local maximum. Calculations of speckle contrast for several aberration conditions are also presented.
针对部分发展和完全发展的散斑,从理论上研究了高达高斯激光散斑二阶矩的光学像差效应。在研究过程中,平面波照射的漫射器在物平面中产生相位扰动的随机场,该随机场在像平面中产生散斑。理论推导表明,由于像差,像场统计通常是非圆高斯分布。散斑统计不受诸如彗差等奇次函数像差的影响,对于非常弱或非常强的漫射器,像差的依赖性渐近可忽略。此外,作为光学像差函数的高斯散斑对比度在无像差条件下呈现一个驻点,在该点对比度显然未达到局部最大值。还给出了几种像差条件下散斑对比度的计算结果。