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Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation

The complex nonlinear dynamics of mode-locked fibre lasers, including a broad variety of dissipative structures and self-organization effects, have drawn significant research interest. Around the 2 μm band, conventional saturable absorbers (SAs) possess small modulation depth and slow relaxation tim...

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Autores principales: Chernysheva, Maria, Bednyakova, Anastasia, Al Araimi, Mohammed, Howe, Richard C. T., Hu, Guohua, Hasan, Tawfique, Gambetta, Alessio, Galzerano, Gianluca, Rümmeli, Mark, Rozhin, Aleksey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347134/
https://www.ncbi.nlm.nih.gov/pubmed/28287159
http://dx.doi.org/10.1038/srep44314
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author Chernysheva, Maria
Bednyakova, Anastasia
Al Araimi, Mohammed
Howe, Richard C. T.
Hu, Guohua
Hasan, Tawfique
Gambetta, Alessio
Galzerano, Gianluca
Rümmeli, Mark
Rozhin, Aleksey
author_facet Chernysheva, Maria
Bednyakova, Anastasia
Al Araimi, Mohammed
Howe, Richard C. T.
Hu, Guohua
Hasan, Tawfique
Gambetta, Alessio
Galzerano, Gianluca
Rümmeli, Mark
Rozhin, Aleksey
author_sort Chernysheva, Maria
collection PubMed
description The complex nonlinear dynamics of mode-locked fibre lasers, including a broad variety of dissipative structures and self-organization effects, have drawn significant research interest. Around the 2 μm band, conventional saturable absorbers (SAs) possess small modulation depth and slow relaxation time and, therefore, are incapable of ensuring complex inter-pulse dynamics and bound-state soliton generation. We present observation of multi-soliton complex generation in mode-locked thulium (Tm)-doped fibre laser, using double-wall carbon nanotubes (DWNT-SA) and nonlinear polarisation evolution (NPE). The rigid structure of DWNTs ensures high modulation depth (64%), fast relaxation (1.25 ps) and high thermal damage threshold. This enables formation of 560-fs soliton pulses; two-soliton bound-state with 560 fs pulse duration and 1.37 ps separation; and singlet+doublet soliton structures with 1.8 ps duration and 6 ps separation. Numerical simulations based on the vectorial nonlinear Schr¨odinger equation demonstrate a transition from single-pulse to two-soliton bound-states generation. The results imply that DWNTs are an excellent SA for the formation of steady single- and multi-soliton structures around 2 μm region, which could not be supported by single-wall carbon nanotubes (SWNTs). The combination of the potential bandwidth resource around 2 μm with the soliton molecule concept for encoding two bits of data per clock period opens exciting opportunities for data-carrying capacity enhancement.
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spelling pubmed-53471342017-03-14 Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation Chernysheva, Maria Bednyakova, Anastasia Al Araimi, Mohammed Howe, Richard C. T. Hu, Guohua Hasan, Tawfique Gambetta, Alessio Galzerano, Gianluca Rümmeli, Mark Rozhin, Aleksey Sci Rep Article The complex nonlinear dynamics of mode-locked fibre lasers, including a broad variety of dissipative structures and self-organization effects, have drawn significant research interest. Around the 2 μm band, conventional saturable absorbers (SAs) possess small modulation depth and slow relaxation time and, therefore, are incapable of ensuring complex inter-pulse dynamics and bound-state soliton generation. We present observation of multi-soliton complex generation in mode-locked thulium (Tm)-doped fibre laser, using double-wall carbon nanotubes (DWNT-SA) and nonlinear polarisation evolution (NPE). The rigid structure of DWNTs ensures high modulation depth (64%), fast relaxation (1.25 ps) and high thermal damage threshold. This enables formation of 560-fs soliton pulses; two-soliton bound-state with 560 fs pulse duration and 1.37 ps separation; and singlet+doublet soliton structures with 1.8 ps duration and 6 ps separation. Numerical simulations based on the vectorial nonlinear Schr¨odinger equation demonstrate a transition from single-pulse to two-soliton bound-states generation. The results imply that DWNTs are an excellent SA for the formation of steady single- and multi-soliton structures around 2 μm region, which could not be supported by single-wall carbon nanotubes (SWNTs). The combination of the potential bandwidth resource around 2 μm with the soliton molecule concept for encoding two bits of data per clock period opens exciting opportunities for data-carrying capacity enhancement. Nature Publishing Group 2017-03-13 /pmc/articles/PMC5347134/ /pubmed/28287159 http://dx.doi.org/10.1038/srep44314 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Chernysheva, Maria
Bednyakova, Anastasia
Al Araimi, Mohammed
Howe, Richard C. T.
Hu, Guohua
Hasan, Tawfique
Gambetta, Alessio
Galzerano, Gianluca
Rümmeli, Mark
Rozhin, Aleksey
Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title_full Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title_fullStr Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title_full_unstemmed Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title_short Double-Wall Carbon Nanotube Hybrid Mode-Locker in Tm-doped Fibre Laser: A Novel Mechanism for Robust Bound-State Solitons Generation
title_sort double-wall carbon nanotube hybrid mode-locker in tm-doped fibre laser: a novel mechanism for robust bound-state solitons generation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5347134/
https://www.ncbi.nlm.nih.gov/pubmed/28287159
http://dx.doi.org/10.1038/srep44314
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