Author
Listed:
- Luying Yi
(National University of Singapore)
- Bo Hou
(National University of Singapore)
- He Zhao
(National University of Singapore
Joint School of National University of Singapore and Tianjin University)
- Xiaogang Liu
(National University of Singapore
Joint School of National University of Singapore and Tianjin University
National University of Singapore Suzhou Research Institute
Agency for Science, Technology and Research)
Abstract
Light-field detection measures both the intensity of light rays and their precise direction in free space. However, current light-field detection techniques either require complex microlens arrays or are limited to the ultraviolet–visible light wavelength ranges1–4. Here we present a robust, scalable method based on lithographically patterned perovskite nanocrystal arrays that can be used to determine radiation vectors from X-rays to visible light (0.002–550 nm). With these multicolour nanocrystal arrays, light rays from specific directions can be converted into pixelated colour outputs with an angular resolution of 0.0018°. We find that three-dimensional light-field detection and spatial positioning of light sources are possible by modifying nanocrystal arrays with specific orientations. We also demonstrate three-dimensional object imaging and visible light and X-ray phase-contrast imaging by combining pixelated nanocrystal arrays with a colour charge-coupled device. The ability to detect light direction beyond optical wavelengths through colour-contrast encoding could enable new applications, for example, in three-dimensional phase-contrast imaging, robotics, virtual reality, tomographic biological imaging and satellite autonomous navigation.
Suggested Citation
Luying Yi & Bo Hou & He Zhao & Xiaogang Liu, 2023.
"X-ray-to-visible light-field detection through pixelated colour conversion,"
Nature, Nature, vol. 618(7964), pages 281-286, June.
Handle:
RePEc:nat:nature:v:618:y:2023:i:7964:d:10.1038_s41586-023-05978-w
DOI: 10.1038/s41586-023-05978-w
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