Optical Characteristics of an Ultrasound Gel Lens

Haruto Miki;Fumiko Taniguchi;Kosuke Nakamura;Yuki Harada;Mami Matsukawa;Daisuke Koyama
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Abstract

Conventional camera modules are characterized by a substantial size, thickness, and weight. This is a consequence of the need for multiple lens elements to achieve the required level of image quality. However, as portable electronic devices continue to undergo miniaturization, there is a growing demand for smaller and thinner camera modules. In this paper, the optical characteristics of an ultrasound gel lens were evaluated quantitatively by expanding the wavefront of the transmitted light in terms of the Zernike polynomial. It was possible to control the focal length of the lens by changing its surface profile through the acoustic radiation force generated by ultrasonic vibration. The effects of ultrasound excitation on spherical aberration, coma aberrations, and astigmatisms were investigated. It was observed that spherical and coma aberrations increased with voltage amplitude, while astigmatism exhibited a reduction in magnitude.
超声凝胶透镜的光学特性
传统相机模组的特点是尺寸、厚度和重量都很大。这是需要多个镜头元件来达到所需的图像质量水平的结果。然而,随着便携式电子设备的不断小型化,对更小更薄的相机模块的需求也在不断增长。本文利用Zernike多项式对透射光的波前展开,定量评价了超声凝胶透镜的光学特性。利用超声振动产生的声辐射力,通过改变透镜的表面轮廓来控制透镜的焦距。研究了超声激发对球面像差、彗差和像散的影响。球差和彗差随电压幅值增大而增大,而像散随电压幅值减小而减小。
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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