Zhao Pengpeng, Ataman Çağlar, Zappe Hans
Opt Express. 2015 Aug 10;23(16):21264-78. doi: 10.1364/OE.23.021264.
We present an iterative design method for liquid-tunable aspherical lenses capable of diffraction-limited performance over a wide focal length range. The lenses are formed by a thin elastomer meniscus with a variable thickness profile engineered to deform into an ideal asphere under uniform pressure load. Compared to their more conventional counterparts, the proposed lenses significantly reduce spherical aberration over a larger portion of the aperture. The design procedure begins with the semi-analytical calculation of the meniscus thickness profile using large-deflection thin plate theory. This initial profile is then further optimized using coupled finite element analysis and ray-tracing simulations iteratively. We apply the developed method to design a tunable aspherical lens with 3 mm clear aperture and 8 mm optimum focal length, and numerically demonstrate the improvement in optical performance over conventional tunable-lenses over a focal length range from 6 mm to 12 mm. Using 80% of the clear aperture, the lens has better than λ/4 RMS surface error over the focal length range from 7.7 mm to 8.5 mm, corresponding to 10% tuning of focal length with diffraction-limited performance. The sources of potential fabrication errors in a practical implementation of such a lens are also analyzed in detail in terms of their influence on optical performance.
我们提出了一种用于液体可调非球面透镜的迭代设计方法,该透镜能够在很宽的焦距范围内实现衍射极限性能。这些透镜由具有可变厚度轮廓的薄弹性体弯月面形成,该轮廓经过设计,可在均匀压力载荷下变形为理想的非球面。与传统的同类透镜相比,所提出的透镜在更大的孔径部分显著降低了球差。设计过程首先使用大挠度薄板理论对半解析计算弯月面厚度轮廓。然后使用耦合有限元分析和光线追踪模拟对该初始轮廓进行迭代进一步优化。我们应用所开发的方法设计了一个孔径为3毫米、最佳焦距为8毫米的可调非球面透镜,并通过数值模拟证明了在6毫米至12毫米的焦距范围内,其光学性能相对于传统可调透镜有所改善。在使用80%的孔径时,该透镜在7.7毫米至8.5毫米的焦距范围内具有优于λ/4的均方根表面误差,这对应于焦距10%的调谐且具有衍射极限性能。还详细分析了这种透镜在实际制造中潜在制造误差的来源及其对光学性能的影响。