Artal P, Marcos S, Navarro R, Williams D R
Departamento de Física, Universidad de Murcia, Spain.
J Opt Soc Am A Opt Image Sci Vis. 1995 Feb;12(2):195-201. doi: 10.1364/josaa.12.000195.
We investigated the formation of the aerial image in the double-pass method to measure the optical quality of the human eye. We show theoretically and empirically that the double pass through the eye's optics forces the light distribution in the aerial image to be an even-symmetric function even if the single-pass point-spread function is asymmetric as a result of odd aberrations in the eye. The reason for this is that the double-pass imaging process is described by the autocorrelation rather than the autoconvolution of the single-pass point-spread functions, as has been previously assumed. This implies that although the modulation transfer function can be computed from the double-pass aerial image, the phase transfer function cannot. We also show that the lateral chromatic aberration of the eye cannot be measured with the double-pass procedure because it is canceled by the second pass through the eye's optics.
我们研究了双程法中空中图像的形成,以测量人眼的光学质量。我们从理论和实证上表明,即使由于眼睛中的奇数像差导致单程点扩散函数不对称,但光线两次穿过眼睛光学系统会使空中图像中的光分布成为偶对称函数。其原因在于,双程成像过程由单程点扩散函数的自相关而非自卷积来描述,这与之前的假设不同。这意味着,虽然调制传递函数可以从双程空中图像计算得出,但相位传递函数却无法计算。我们还表明,眼睛的横向色差无法通过双程程序测量,因为它在光线第二次穿过眼睛光学系统时被抵消了。