Experimental Demonstration of Single-Pixel Imaging Using a Polarization-Maintaining Fiber Array With Four Fibers

IF 2.2 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Sensors Letters Pub Date : 2024-08-13 DOI:10.1109/LSENS.2024.3442233
Kanami Ikeda;Kohei Nishizaki;Osanori Koyama;Makoto Yamada
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Abstract

Endoscopes with small diameters are widely desired in medical and industrial fields. In this letter, we experimentally demonstrated single-pixel imaging (SPI) using a polarization-maintaining (PM) fiber array with few cores to achieve endoscope size reduction. We designed a PM fiber array with four fibers for the SPI system. The fiber array generated spatial patterns modulated using thermo-optic phase modulation. These patterns were then used to project objects, and the light intensities were detected. Using the pattern information and obtained intensities, we reconstructed the object information. This letter provides the first experimental demonstration of an SPI system incorporating a PM fiber array with four fibers. The results represent an advancement for realizing a compact endoscope based on SPI algorithms. The resolution of the reconstructions obtained using the SPI system can be improved. Thus, the results of this letter can be used as a reference for further developments.
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使用具有四根光纤的偏振保持光纤阵列进行单像素成像的实验演示
医疗和工业领域普遍需要小直径的内窥镜。在这封信中,我们通过实验展示了使用极化维持(PM)光纤阵列的单像素成像(SPI),该光纤阵列具有极少的纤芯,可缩小内窥镜的尺寸。我们为 SPI 系统设计了一个由四根光纤组成的偏振光纤阵列。该光纤阵列利用热光学相位调制产生空间图案。然后利用这些图案来投射物体,并检测光强度。利用图案信息和获得的光强度,我们重建了物体信息。这封信首次提供了一个包含四根光纤的 PM 光纤阵列的 SPI 系统的实验演示。其结果表明,基于 SPI 算法的紧凑型内窥镜的实现取得了进步。使用 SPI 系统获得的重建分辨率可以得到提高。因此,这封信的结果可作为进一步开发的参考。
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来源期刊
IEEE Sensors Letters
IEEE Sensors Letters Engineering-Electrical and Electronic Engineering
CiteScore
3.50
自引率
7.10%
发文量
194
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