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Method of solving triplets consisting of a singlet and air-spaced doublet with given primary aberrations

机译:解决由给定的主像差构成的单重态和间隔双态构成的三重态的方法

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An effective algebraic algorithm is proposed as a computational tool for solving the thin-lens structure of a triplet which consists of a singlet and an air-spaced doublet. The triplet is required to yield specified amounts of lens power and four primary aberrations: spherical aberration, coma, longitudinal chromatic aberration and secondary spectrum. In addition, the air spacing is used to control the zonal spherical aberration and spherochromatism. The problem is solved in the following manner. First, the equations for power and chromatic aberration are combined into a quartic polynomial equation if the object is at a finite distance, or combined into a quadratic polynomial equation if the object is at infinity. The roots give the element powers. Second, the lens shapes are obtained by solving the quartic polynomial equation which is obtained by combining the equations of spherical aberration and coma. Since quartic and quadratic equations can be solved using simple algebraic methods, the algorithm is rapid and guarantees that all the lens forms can be found. [References: 12]
机译:提出了一种有效的代数算法作为计算工具,用于求解由单线态和空的双线态组成的三线态的薄透镜结构。需要三重态来产生指定量的镜头光焦度和四个主要像差:球差,彗差,纵向色差和二次光谱。另外,气隙用于控制带状球差和球色差。该问题通过以下方式解决。首先,如果物体处于有限距离,则将幂和色差方程组合为四次多项式方程,如果物体为无限远,则组合为二次多项式方程。根源赋予元素力量。其次,通过求解四次多项式方程来获得透镜形状,该四次多项式方程是通过组合球差和彗差方程获得的。由于可以使用简单的代数方法求解四次方程和二次方程,因此该算法速度很快,可以确保找到所有晶状体。 [参考:12]

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