3D position nanometrology of a coronavirus-like nanoparticle with topologically structured light
3D position nanometrology of a coronavirus-like nanoparticle with topologically structured light
Scattering of topologically structured light is highly sensitive to the position of a scattering object. We show that the position of a coronavirus-like 100 nm polystyrene sphere can be measured optically with deeply subwavelength accuracy.
Wang, Yu
782c5e8b-7ff6-4f4f-9046-5b6410d21249
Rendon-Barraza, Carolina
8330193a-4b7d-45c8-8427-20de72e861b8
MacDonald, Kevin F.
76c84116-aad1-4973-b917-7ca63935dba5
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
15 May 2022
Wang, Yu
782c5e8b-7ff6-4f4f-9046-5b6410d21249
Rendon-Barraza, Carolina
8330193a-4b7d-45c8-8427-20de72e861b8
MacDonald, Kevin F.
76c84116-aad1-4973-b917-7ca63935dba5
Plum, Eric
50761a26-2982-40df-9153-7aecc4226eb5
Ou, Jun-Yu
3fb703e3-b222-46d2-b4ee-75f296d9d64d
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
Wang, Yu, Rendon-Barraza, Carolina, MacDonald, Kevin F., Plum, Eric, Ou, Jun-Yu and Zheludev, Nikolai
(2022)
3D position nanometrology of a coronavirus-like nanoparticle with topologically structured light.
CLEO, , San Jose, United States.
15 - 20 May 2022.
2 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Scattering of topologically structured light is highly sensitive to the position of a scattering object. We show that the position of a coronavirus-like 100 nm polystyrene sphere can be measured optically with deeply subwavelength accuracy.
Text
CLEO - 3D Position Nanometrology
More information
Published date: 15 May 2022
Venue - Dates:
CLEO, , San Jose, United States, 2022-05-15 - 2022-05-20
Identifiers
Local EPrints ID: 456083
URI: http://eprints.soton.ac.uk/id/eprint/456083
PURE UUID: 2aa17d2a-37db-4d49-bec2-97270a651b8c
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Date deposited: 26 Apr 2022 12:57
Last modified: 22 May 2024 04:01
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