Baranec Christoph
Caltech Optical Observatories, California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125, USA.
Appl Opt. 2009 Nov 10;48(32):6259-63. doi: 10.1364/AO.48.006259.
Low-Fresnel number optical systems exhibit significant diffraction effects that cause a shift in the peaks of on-axis irradiance away from the geometric focal point. This is currently interpreted as a change of the focal length of an optical system, leading optical system designers to compensate for the effect by assuming the image plane is coincident with the peak of on-axis irradiance. While this may be an appropriate interpretation for certain applications, I show that despite the shift in peak irradiance away from the geometrical focal point, a change in a system's optical power will not increase the on-axis irradiance at that distance. This is important for low-light level applications where it is necessary to mitigate diffraction induced transmission losses. I also show that low-Fresnel number systems have increased tolerance on system power at the geometrical focal point and as a result are inherently achromatic.
低菲涅耳数光学系统表现出显著的衍射效应,这会导致轴上辐照度峰值偏离几何焦点。目前,这被解释为光学系统焦距的变化,导致光学系统设计师通过假设像平面与轴上辐照度峰值重合来补偿这种效应。虽然这对于某些应用可能是一种合适的解释,但我表明,尽管峰值辐照度偏离了几何焦点,但系统光焦度的变化并不会增加该距离处的轴上辐照度。这对于需要减轻衍射引起的传输损耗的低光水平应用很重要。我还表明,低菲涅耳数系统在几何焦点处对系统光焦度具有更高的容差,因此本质上是消色差的。