Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber

Four-wave mixing (FWM) was demonstrated using polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber as a device for nonlinear application. The FWM-based system had a maximum FWM conversion efficiency and wavelength tuning range of -37.5 dB and 6 nm, respectively. The FWM-based laser out...

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Main Authors: Ahmad, H., Zaini, M. K. A., Samion, M. Z.
Format: Article
Published: Springer 2023
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Online Access:http://eprints.um.edu.my/38918/
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spelling my.um.eprints.389182024-11-28T01:11:36Z http://eprints.um.edu.my/38918/ Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber Ahmad, H. Zaini, M. K. A. Samion, M. Z. TA Engineering (General). Civil engineering (General) TK Electrical engineering. Electronics Nuclear engineering Four-wave mixing (FWM) was demonstrated using polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber as a device for nonlinear application. The FWM-based system had a maximum FWM conversion efficiency and wavelength tuning range of -37.5 dB and 6 nm, respectively. The FWM-based laser output was highly stable, with a maximum fluctuation in FWM conversion efficiency of only 0.1 dB. The overlaying of low refractive index (RI) polymer on the FePS3 arc-shaped fiber enhanced the device's performance, with an effective nonlinear coefficient, gamma, of the device was calculated to be 666.7 W-1 km(-1). The proposed nonlinear device is an exciting device for integration in optical network applications. Springer 2023-01 Article PeerReviewed Ahmad, H. and Zaini, M. K. A. and Samion, M. Z. (2023) Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber. Optical and Quantum Electronics, 55 (1). ISSN 0306-8919, DOI https://doi.org/10.1007/s11082-022-04172-y <https://doi.org/10.1007/s11082-022-04172-y>. 10.1007/s11082-022-04172-y
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TA Engineering (General). Civil engineering (General)
TK Electrical engineering. Electronics Nuclear engineering
Ahmad, H.
Zaini, M. K. A.
Samion, M. Z.
Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
description Four-wave mixing (FWM) was demonstrated using polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber as a device for nonlinear application. The FWM-based system had a maximum FWM conversion efficiency and wavelength tuning range of -37.5 dB and 6 nm, respectively. The FWM-based laser output was highly stable, with a maximum fluctuation in FWM conversion efficiency of only 0.1 dB. The overlaying of low refractive index (RI) polymer on the FePS3 arc-shaped fiber enhanced the device's performance, with an effective nonlinear coefficient, gamma, of the device was calculated to be 666.7 W-1 km(-1). The proposed nonlinear device is an exciting device for integration in optical network applications.
format Article
author Ahmad, H.
Zaini, M. K. A.
Samion, M. Z.
author_facet Ahmad, H.
Zaini, M. K. A.
Samion, M. Z.
author_sort Ahmad, H.
title Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
title_short Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
title_full Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
title_fullStr Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
title_full_unstemmed Enhanced four-wave mixing with polymer-coated Iron phosphorus trisulfide (FePS3) arc-shaped fiber
title_sort enhanced four-wave mixing with polymer-coated iron phosphorus trisulfide (feps3) arc-shaped fiber
publisher Springer
publishDate 2023
url http://eprints.um.edu.my/38918/
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score 13.223943