Superoscillation and Super-resolution
Superoscillation and Super-resolution
Rapid variations of intensity and phase can take place in complex, structured light fields at (sub)nanometre length scales far smaller than the commonly understood half-wavelength (λ/2) diffraction limit. Such fields, and their interactions with matter also structured at the nanoscale, offer important potential applications in imaging, spectroscopy, metrology, and opto-electronic/mechanical nanodevices, and in fundamental studies of light-matter interaction down to the pico- (i.e. atomic) scale.
MacDonald, Kevin F.
76c84116-aad1-4973-b917-7ca63935dba5
1 August 2022
MacDonald, Kevin F.
76c84116-aad1-4973-b917-7ca63935dba5
MacDonald, Kevin F.
(2022)
Superoscillation and Super-resolution.
EPS Symposium on the third Generation Metamaterials, , Cetraro, Italy.
01 - 05 Aug 2022.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Rapid variations of intensity and phase can take place in complex, structured light fields at (sub)nanometre length scales far smaller than the commonly understood half-wavelength (λ/2) diffraction limit. Such fields, and their interactions with matter also structured at the nanoscale, offer important potential applications in imaging, spectroscopy, metrology, and opto-electronic/mechanical nanodevices, and in fundamental studies of light-matter interaction down to the pico- (i.e. atomic) scale.
Text
MM3_1 macdonald - superoscillation and super-resolution
- Author's Original
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Submitted date: 18 May 2022
Published date: 1 August 2022
Venue - Dates:
EPS Symposium on the third Generation Metamaterials, , Cetraro, Italy, 2022-08-01 - 2022-08-05
Identifiers
Local EPrints ID: 457636
URI: http://eprints.soton.ac.uk/id/eprint/457636
PURE UUID: 476fa4d5-2b95-4d2a-974e-8e52b3dd9797
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Date deposited: 14 Jun 2022 16:48
Last modified: 17 Mar 2024 07:19
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Contributors
Author:
Kevin F. MacDonald
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