Direct panoramic optical imaging for closed surfaces.

IF 1.5 3区 物理与天体物理 Q3 OPTICS
Chao Yang, Fei Sun, Ran Sun, Yichao Liu
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引用次数: 0

Abstract

Common methods for panoramic imaging of closed surfaces currently involve the use of motion or multiple cameras, combined with image processing algorithms to reconstruct a full-perspective image. These methods require image reconstruction and post-processing, which limits the accuracy of the imaging. In this study, we propose a silver-glass composite layered structure with subwavelength spacing to create an equivalent null medium in the optical band. By utilizing the null medium's directional projection property of optical waves, what we believe to be a novel lens, the direct panoramic optical imaging lens (DPOIL), is designed. Both 2D and 3D simulated results demonstrate that the proposed DPOIL can directly project a full-perspective optical pattern from a closed curved object surface onto a flat image plane. It achieves direct panoramic imaging over a wide spectral band from 544 to 734 nm for TM-polarized waves. The imaging process does not require image reconstruction or post-processing, thus enhancing the accuracy of panoramic imaging. The DPOIL proposed in this study has potential applications in biological surface imaging, panoramic detection, and other scenarios requiring panoramic direct imaging of closed surfaces within the optical band.

封闭表面的直接全景光学成像。
目前对封闭表面进行全景成像的常用方法包括使用运动或多个摄像机,结合图像处理算法重建全视角图像。这些方法需要进行图像重建和后处理,限制了成像的精度。在这项研究中,我们提出了一种具有亚波长间隔的银-玻璃复合层状结构,以在光学波段产生等效的零介质。利用零介质光波的定向投影特性,设计了一种新型透镜——直接全景光学成像透镜(DPOIL)。二维和三维仿真结果表明,DPOIL可以直接将封闭曲面物体表面的全透视光学图案投影到平坦成像平面上。它实现了直接全景成像在宽光谱波段从544至734纳米的tm极化波。成像过程不需要图像重建或后处理,从而提高了全景成像的准确性。本研究提出的DPOIL在生物表面成像、全景检测以及其他需要在光学波段内对封闭表面进行全景直接成像的场景中具有潜在的应用前景。
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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来源期刊
CiteScore
3.40
自引率
10.50%
发文量
417
审稿时长
3 months
期刊介绍: The Journal of the Optical Society of America A (JOSA A) is devoted to developments in any field of classical optics, image science, and vision. JOSA A includes original peer-reviewed papers on such topics as: * Atmospheric optics * Clinical vision * Coherence and Statistical Optics * Color * Diffraction and gratings * Image processing * Machine vision * Physiological optics * Polarization * Scattering * Signal processing * Thin films * Visual optics Also: j opt soc am a.
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