Micro-tomography via single-pixel imaging

Tomographic imaging allows for the cross-sectional imaging of specimen, whereas single-pixel imaging can produce image only with a spatial non-resolved detector. Here we propose a compact tomographic imaging system combining single-pixel imaging. This approach uses a digital micromirror device (DMD)...

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Veröffentlicht in:Optics express 2018-11, Vol.26 (24), p.31094-31105
Hauptverfasser: Peng, Junzheng, Yao, Manhong, Cheng, Jiajian, Zhang, Zibang, Li, Shiping, Zheng, Guoan, Zhong, Jingang
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container_end_page 31105
container_issue 24
container_start_page 31094
container_title Optics express
container_volume 26
creator Peng, Junzheng
Yao, Manhong
Cheng, Jiajian
Zhang, Zibang
Li, Shiping
Zheng, Guoan
Zhong, Jingang
description Tomographic imaging allows for the cross-sectional imaging of specimen, whereas single-pixel imaging can produce image only with a spatial non-resolved detector. Here we propose a compact tomographic imaging system combining single-pixel imaging. This approach uses a digital micromirror device (DMD) to encode the spatial information of specimen and employs an array of single-pixel detectors to record the light signals from different directions. For each single-pixel detector, we can retrieve an image of the specimen from a unique perspective angle. Based on the retrieved images, we can realize tomographic imaging, such as intensity images refocusing and three-dimensional (3D) differential-phase-contrast imaging, without mechanically scanning the specimen. Experimental results also demonstrate that the micro-tomographic images with 384×384 pixels can be simultaneously realized only with an array of 5×6 single-pixel detectors. Furthermore, due to the broad operational spectrum of the single-pixel detector, the proposed method is a good candidate to realize tomographic imaging with the non-visible light wavebands, such as terahertz and x-ray, thus it would open up opportunities in many life science and engineering fields.
doi_str_mv 10.1364/OE.26.031094
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