Miks Antonin, Novak Jiri, Novak Pavel
Czech Technical University in Prague, Faculty of Civil Engineering, Department of Physics, Prague, Czech Republic.
Appl Opt. 2013 Apr 1;52(10):2136-44. doi: 10.1364/AO.52.002136.
The theory of third-order aberrations for a system of rotationally symmetric thin tunable-focus fluidic membrane lenses with parabolic surfaces is described. A complex analysis of the third-order design of tunable fluidic lenses is performed considering all types of primary aberrations. Moreover, formulas are derived for the calculation of the change of aberration coefficients of the parabolic tunable fluidic membrane lens with respect to the wavelength. It is shown that spherical aberration of a simple tunable-focus fluidic membrane lens with parabolic surfaces can be corrected, which is not possible with a classical spherical lens. The presented analysis is explained on examples. Derived formulas make possible to calculate parameters of optical systems with fluidic membrane lenses with small residual aberrations.
描述了具有抛物面的旋转对称薄可调焦流体膜透镜系统的三阶像差理论。考虑到所有类型的初级像差,对可调焦流体透镜的三阶设计进行了复杂分析。此外,还推导了用于计算抛物面可调流体膜透镜像差系数随波长变化的公式。结果表明,具有抛物面的简单可调焦流体膜透镜的球差可以校正,而传统球面透镜则无法做到这一点。通过实例对所提出的分析进行了解释。推导的公式使得计算具有小残余像差的流体膜透镜光学系统的参数成为可能。