Sun Licun, Sheng Shuwu, Meng Weidong, Wang Yuanfangzhou, Ou Quanhong, Pu Xiaoyun
Opt Express. 2020 Mar 2;28(5):6806-6819. doi: 10.1364/OE.388656.
A systematic design idea for liquid-filled cylindrical zoom lenses with ideal imaging quality over a wide focal length range is introduced in detail. The PWC method is used to calculate the initial structure parameters of the zoom lenses, and the optical design software ZEMAX is used to eliminate the spherical aberration at different focal lengths. Lenses named SLCL-Doublet are finally designed, which are formed by a symmetric liquid-core cylindrical lens (SLCL) filled with variable refractive index (RI) liquid and a doublet cylindrical lens capable of significantly weakening the spherical aberration. The focal length of the SLCL-Doublet continuously decreases from 101.406 mm to 54.162 mm as the liquid RI changes from 1.3300 to 1.5000. Calculated over 75% of the full aperture, the root mean square (RMS) spot radius of the SLCL-Doublet is always less than 7 µm over the whole focal length range, and the peak-to-valley wavefront error remains below the λ/4 limit when the focal length ranges from 62.373 mm to 65.814 mm, within which the lenses approach the diffraction limit, demonstrating improvement in the optical performance over that of previously designed liquid-core cylindrical lenses. The sources of potential fabrication and installation errors in the practical implementation of the SLCL-Doublet are also analyzed in detail. The SLCL-Doublet is demonstrated to be characterized by high imaging quality and easy installation, which enriches the types of core optical element for measuring the liquid RI and liquid diffusion coefficient and provides guarantee for improving the measurement accuracy.
详细介绍了一种用于液体填充圆柱变焦透镜的系统设计理念,该透镜在宽焦距范围内具有理想的成像质量。采用PWC方法计算变焦透镜的初始结构参数,并使用光学设计软件ZEMAX消除不同焦距下的球差。最终设计出名为SLCL - 双合透镜的透镜,它由填充可变折射率(RI)液体的对称液芯圆柱透镜(SLCL)和能够显著减弱球差的双合圆柱透镜组成。随着液体RI从1.3300变化到1.5000,SLCL - 双合透镜的焦距从101.406 mm连续减小到54.162 mm。在全孔径的75%范围内计算,SLCL - 双合透镜在整个焦距范围内的均方根(RMS)光斑半径始终小于7 µm,当焦距在62.373 mm至65.814 mm范围内时,峰谷波前误差保持在λ/4极限以下,在此范围内透镜接近衍射极限,表明其光学性能比先前设计的液芯圆柱透镜有所提高。还详细分析了SLCL - 双合透镜实际应用中潜在的制造和安装误差来源。结果表明,SLCL - 双合透镜具有成像质量高和易于安装的特点,丰富了用于测量液体RI和液体扩散系数的核心光学元件类型,并为提高测量精度提供了保障。