首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Extended Nijboer-Zernike representation of the vector field in the focal region of an aberrated high-aperture optical system
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Extended Nijboer-Zernike representation of the vector field in the focal region of an aberrated high-aperture optical system

机译:像差高光阑光学系统聚焦区域中矢量场的扩展Nijboer-Zernike表示

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摘要

Taking the classical Ignatowsky/Richards and Wolf formulas as our starting point, we present expressions for the electric field components in the focal region in the case of a high-numerical-aperture optical system. The transmission function, the aberrations, and the spatially varying state of polarization of the wave exiting the optical system are represented in terms of a Zernike polynomial expansion over the exit pupil of the system; a set of generally complex coefficients is needed for a full description of the field in the exit pupil. The field components in the focal region are obtained by means of the evaluation of a set of basic integrals that all allow an analytic treatment; the expressions for the field components show an explicit dependence on the complex coefficients that characterize the optical system. The electric energy density and the power flow in the aberrated three-dimensional distribution in the focal region are obtained with the expressions for the electric and magnetic field components. Some examples of aberrated focal distributions are presented, and some basic characteristics are discussed.
机译:以经典的Ignatowsky / Richards和Wolf公式为出发点,我们给出了在高数值孔径光学系统情况下焦点区域中电场分量的表达式。离开光学系统的波的透射函数,像差和偏振的空间变化状态用系统出射光瞳上的Zernike多项式展开表示;对于出射光瞳中的场的完整描述,需要一组通常为复数的系数。焦点区域的场分量是通过对一组基本积分的求值获得的,这些基本积分都可以进行分析处理。场分量的表达式显示出对光学系统特征的复数系数的明确依赖。利用电场和磁场分量的表达式,获得了焦点区域中畸变的三维分布中的电能密度和功率流。给出了畸变焦距分布的一些示例,并讨论了一些基本特征。

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