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Improved beam propagation method equations

机译:改进的光束传播方法方程

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Improved beam propagation method (BPM) equations are derived for the general case of arbitrary refractive-index spatial distributions. It is shown that in the paraxial approximation the discrete equations admit an analytical solution for the propagation of a paraxial spherical wave, which converges to the analytical solution of the paraxial Helmholtz equation. The generalized Kirchhoff-Fresnel diffraction integral between the object and the image planes can be derived, with its coefficients expressed in terms of the standard ABCD matrix. This result allows the substitution, in the case of an unaberrated system, of the many numerical steps with a single analytical step. We compared the predictions of the standard and improved BPM equations by considering the cases of a Maxwell fish-eye and of a Luneburg lens. (C) 1998 Optical Society of America. [References: 20]
机译:对于任意折射率空间分布的一般情况,得出了改进的光束传播方法(BPM)方程。结果表明,在近轴近似中,离散方程为近轴球面波的传播提供了解析解,收敛于近轴亥姆霍兹方程的解析解。可以导出物体和像平面之间的广义基尔霍夫-菲涅耳衍射积分,其系数用标准ABCD矩阵表示。该结果允许在一个简单系统的情况下用一个分析步骤替换许多数值步骤。我们通过考虑麦克斯韦鱼眼镜头和Luneburg晶状体的情况,比较了标准和改进的BPM方程的预测。 (C)1998年美国眼镜学会。 [参考:20]

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