Imaging three-dimensional single-atom arrays all at once
Simultaneous imaging of a three-dimensional distribution of point sources is presented. In a two-lens microscope, the point-spreads on the quasi-image plane, which is located between the Fourier and image planes, are spatially distinct, so a set of Fresnel lenslets can perform individual wave-front...
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my.um.eprints.279462022-06-20T00:58:07Z http://eprints.um.edu.my/27946/ Imaging three-dimensional single-atom arrays all at once Sun, Haeun Song, Yunheung Byun, Andrew Jeong, Heejeong Ahn, Jaewook QC Physics Simultaneous imaging of a three-dimensional distribution of point sources is presented. In a two-lens microscope, the point-spreads on the quasi-image plane, which is located between the Fourier and image planes, are spatially distinct, so a set of Fresnel lenslets can perform individual wave-front shaping for axial and lateral rearrangements of the images. In experiments performed with single atoms and holographically programmed lenslets, various three-dimensional arrangements of point sources, including axially aligned atoms, are successfully refocused on the screen, demonstrating the simultaneous and time-efficient detection of the three-dimensional holographic imaging. We expect that non-sequential real-time measurements of three-dimensional point sources shall be in particular useful for quantum correlation measurements and in situ tracking of dynamic particles. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement Optical Society of America 2021-02-01 Article PeerReviewed Sun, Haeun and Song, Yunheung and Byun, Andrew and Jeong, Heejeong and Ahn, Jaewook (2021) Imaging three-dimensional single-atom arrays all at once. Optics Express, 29 (3). pp. 4082-4090. ISSN 1094-4087, DOI https://doi.org/10.1364/OE.415805 <https://doi.org/10.1364/OE.415805>. 10.1364/OE.415805 |
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QC Physics Sun, Haeun Song, Yunheung Byun, Andrew Jeong, Heejeong Ahn, Jaewook Imaging three-dimensional single-atom arrays all at once |
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Simultaneous imaging of a three-dimensional distribution of point sources is presented. In a two-lens microscope, the point-spreads on the quasi-image plane, which is located between the Fourier and image planes, are spatially distinct, so a set of Fresnel lenslets can perform individual wave-front shaping for axial and lateral rearrangements of the images. In experiments performed with single atoms and holographically programmed lenslets, various three-dimensional arrangements of point sources, including axially aligned atoms, are successfully refocused on the screen, demonstrating the simultaneous and time-efficient detection of the three-dimensional holographic imaging. We expect that non-sequential real-time measurements of three-dimensional point sources shall be in particular useful for quantum correlation measurements and in situ tracking of dynamic particles. (C) 2021 Optical Society of America under the terms of the OSA Open Access Publishing Agreement |
format |
Article |
author |
Sun, Haeun Song, Yunheung Byun, Andrew Jeong, Heejeong Ahn, Jaewook |
author_facet |
Sun, Haeun Song, Yunheung Byun, Andrew Jeong, Heejeong Ahn, Jaewook |
author_sort |
Sun, Haeun |
title |
Imaging three-dimensional single-atom arrays all at once |
title_short |
Imaging three-dimensional single-atom arrays all at once |
title_full |
Imaging three-dimensional single-atom arrays all at once |
title_fullStr |
Imaging three-dimensional single-atom arrays all at once |
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Imaging three-dimensional single-atom arrays all at once |
title_sort |
imaging three-dimensional single-atom arrays all at once |
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Optical Society of America |
publishDate |
2021 |
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http://eprints.um.edu.my/27946/ |
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1738510680450924544 |