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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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 |
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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 |
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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 |
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Springer |
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2023 |
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http://eprints.um.edu.my/38918/ |
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1817841940751712256 |
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13.223943 |