Efficient multibeam generation in square lattices using SMF-SCF structure
Efficient multibeam generation in square lattices using SMF-SCF structure
We present a highly efficient method for generating multiple beam spots through the multimode interference within single mode fiber – square core fiber (SMF-SCF) structures. By adjusting the length of SCF, we can achieve diverse beam spot configurations in a square lattice, such as 4×4, 3×3 and 2×2, providing unparalleled flexibility. Through simulations and experimental validations at a wavelength of 1060 nm, our study unveils significant potential for applications in photonics and laser technology.
Jung, Yongmin
6685e51e-be47-4c96-8c4b-65aee3b5126d
Vukovic, Natasha
3de33ba9-eb8f-4a06-a65e-4ac0a602a157
Codemard, Christophe A.
58785216-85ae-4722-9429-312a4173e6bb
Zervas, Michalis N.
1840a474-dd50-4a55-ab74-6f086aa3f701
31 January 2024
Jung, Yongmin
6685e51e-be47-4c96-8c4b-65aee3b5126d
Vukovic, Natasha
3de33ba9-eb8f-4a06-a65e-4ac0a602a157
Codemard, Christophe A.
58785216-85ae-4722-9429-312a4173e6bb
Zervas, Michalis N.
1840a474-dd50-4a55-ab74-6f086aa3f701
Jung, Yongmin, Vukovic, Natasha, Codemard, Christophe A. and Zervas, Michalis N.
(2024)
Efficient multibeam generation in square lattices using SMF-SCF structure.
SPIE Photonics West 2024, The Moscone Center, San Francisco, United States.
27 Jan - 01 Feb 2024.
4 pp
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
We present a highly efficient method for generating multiple beam spots through the multimode interference within single mode fiber – square core fiber (SMF-SCF) structures. By adjusting the length of SCF, we can achieve diverse beam spot configurations in a square lattice, such as 4×4, 3×3 and 2×2, providing unparalleled flexibility. Through simulations and experimental validations at a wavelength of 1060 nm, our study unveils significant potential for applications in photonics and laser technology.
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Efficient multibeam generation in square lattices using SMF-SCF structure-final
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Published date: 31 January 2024
Venue - Dates:
SPIE Photonics West 2024, The Moscone Center, San Francisco, United States, 2024-01-27 - 2024-02-01
Identifiers
Local EPrints ID: 489498
URI: http://eprints.soton.ac.uk/id/eprint/489498
PURE UUID: d26fb1b2-4ea3-4c9c-9430-2d5343a2251b
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Date deposited: 25 Apr 2024 16:35
Last modified: 27 Apr 2024 01:45
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Contributors
Author:
Yongmin Jung
Author:
Natasha Vukovic
Author:
Christophe A. Codemard
Author:
Michalis N. Zervas
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