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Chromatic confocal metalens and scattering medium-based speckle pattern engineering for compact, low-cost distometers

Chromatic confocal metalens and scattering medium-based speckle pattern engineering for compact, low-cost distometers
Chromatic confocal metalens and scattering medium-based speckle pattern engineering for compact, low-cost distometers
We demonstrate a reconstructive distometer with 0.78 micron resolution and 2.5 cm cubic footprint, utilising an engineered metalens and laser-written scattering medium for tailored speckle pattern generation, benefiting from low-cost, compact size and high stability.
Optica Publishing Group
Falak, Przemyslaw
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Ho-Tin Chan, Justin
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Williamson, James
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Henning, Andrew
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Martin, Haydn
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Jiang, Xiangqian
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Zahertar, Shahrzad
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Moog, Bruno
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Lee, Timothy
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Holmes, Christopher
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Brambilla, Gilberto
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Beresna, Martynas
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Falak, Przemyslaw
4d4cfc46-eca3-4942-a698-5b308a6bbb28
Ho-Tin Chan, Justin
2f2f6f73-b94c-4400-a1f2-b56a0a1e2124
Williamson, James
013aa177-1407-476d-bad1-aaa931c54ede
Henning, Andrew
ba7b16de-5e91-43fa-86e0-6b5ee6fe5a74
Martin, Haydn
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Jiang, Xiangqian
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Zahertar, Shahrzad
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Moog, Bruno
fb647fef-2caa-44b3-8157-2b141f5d8cf5
Lee, Timothy
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Holmes, Christopher
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Brambilla, Gilberto
815d9712-62c7-47d1-8860-9451a363a6c8
Beresna, Martynas
b0bb9665-1128-40ec-9910-5fdd82874312

Falak, Przemyslaw, Ho-Tin Chan, Justin, Williamson, James, Henning, Andrew, Martin, Haydn, Jiang, Xiangqian, Zahertar, Shahrzad, Moog, Bruno, Lee, Timothy, Holmes, Christopher, Brambilla, Gilberto and Beresna, Martynas (2023) Chromatic confocal metalens and scattering medium-based speckle pattern engineering for compact, low-cost distometers. In Proceedings: 28th International Conference on Optical Fiber Sensors. Optica Publishing Group.. (doi:10.1364/OFS.2023.Tu3.80).

Record type: Conference or Workshop Item (Paper)

Abstract

We demonstrate a reconstructive distometer with 0.78 micron resolution and 2.5 cm cubic footprint, utilising an engineered metalens and laser-written scattering medium for tailored speckle pattern generation, benefiting from low-cost, compact size and high stability.

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More information

Published date: November 2023
Venue - Dates: Optical Fiber Sensors 2023, , Naka-ku, Hamamatsu-shi, Japan, 2023-11-20 - 2023-11-24

Identifiers

Local EPrints ID: 497849
URI: http://eprints.soton.ac.uk/id/eprint/497849
PURE UUID: 44b5d017-e3f0-49a6-b40e-7e48de8828a0
ORCID for Przemyslaw Falak: ORCID iD orcid.org/0000-0002-2970-0700
ORCID for Shahrzad Zahertar: ORCID iD orcid.org/0000-0001-6988-2345
ORCID for Christopher Holmes: ORCID iD orcid.org/0000-0001-9021-3760
ORCID for Gilberto Brambilla: ORCID iD orcid.org/0000-0002-5730-0499

Catalogue record

Date deposited: 03 Feb 2025 17:43
Last modified: 11 Sep 2025 03:41

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Contributors

Author: Przemyslaw Falak ORCID iD
Author: Justin Ho-Tin Chan
Author: James Williamson
Author: Andrew Henning
Author: Haydn Martin
Author: Xiangqian Jiang
Author: Shahrzad Zahertar ORCID iD
Author: Bruno Moog
Author: Timothy Lee
Author: Gilberto Brambilla ORCID iD
Author: Martynas Beresna

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