Applications of a Birefringent Lens as an Optical Image Processing Device

Surajit Mandal
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Abstract

A uniaxial birefringent crystal lens with its optic axis perpendicular to the system axis and sandwiched between two properly oriented linear polarizers behaves as an isotropic lens with a radially varying complex mask on its pupil plane. The proposed system may be adapted for both apodization and enhanced resolution just by rotating one of the two linear polarizers even when it is illuminated with a polychromatic source of light. Hence, the system may find applications in the fields of spectroscopy and astronomy. In general, it behaves as a double focus lens. However, by varying the birefringent lens parameters, it is possible to obtain a noticeably large depth-of-focus compared to an identical isotropic lens. An optical imaging system with large depth-of-focus is a prerequisite for many fields of applications particularly for microscope imagery, medical imaging, as well as for automatic inspection in microelectronics industry.
双折射透镜作为光学图像处理器件的应用
一个单轴双折射晶体透镜,其光轴垂直于系统轴,夹在两个适当取向的线性偏振片之间,表现为在其瞳孔平面上具有径向变化的复掩模的各向同性透镜。所提出的系统可以适用于apodiization和增强的分辨率,仅仅通过旋转两个线性偏振器之一,甚至当它是用多色光源照明。因此,该系统可以在光谱学和天文学领域找到应用。一般来说,它表现为双焦点镜头。然而,通过改变双折射透镜参数,有可能获得一个明显的大的聚焦深度相比,一个相同的各向同性透镜。具有大聚焦深度的光学成像系统是许多应用领域的先决条件,特别是显微镜成像、医学成像以及微电子工业中的自动检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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