Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser

Maria Chernysheva, Alexander Krylov, Chengbo Mou, Raz N. Arif, Alex Rozhin, Mark Rümelli, Sergei K. Turitsyn, Evgeny Dianov

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

A thulium-doped all-fibre laser hybrid mode-locked by the co-action of nonlinear polarization evolution and single-walled carbon nanotubes generating 500-fs high-order solitons with the pulse energy 10.87 nJ at 1.9 μm wavelength band is demonstrated.

Original languageEnglish
Title of host publicationSpecialty Optical Fibers 2014
PublisherOptical Society of America
ISBN (Print)978-1-55752-820-9
DOIs
Publication statusPublished - 31 Dec 2014
EventBragg Gratings, Photosensitivity, and Poling in Glass Waveguides / Nonlinear Photonics / Optical Sensors / Specialty Optical Fibers - Barcelona , Spain
Duration: 27 Jul 201431 Jul 2014

Publication series

NameOSA technical digest
PublisherOptical Society of America

Conference

ConferenceBragg Gratings, Photosensitivity, and Poling in Glass Waveguides / Nonlinear Photonics / Optical Sensors / Specialty Optical Fibers
Abbreviated titleBGPP / NP / OS / SOF 2014
CountrySpain
CityBarcelona
Period27/07/1431/07/14

Fingerprint

Thulium
Single-walled carbon nanotubes (SWCN)
Fiber lasers
Laser modes
Solitons
Polarization
Wavelength

Cite this

Chernysheva, M., Krylov, A., Mou, C., Arif, R. N., Rozhin, A., Rümelli, M., ... Dianov, E. (2014). Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser. In Specialty Optical Fibers 2014 [paper SoTh2B.2] (OSA technical digest). Optical Society of America. https://doi.org/10.1364/SOF.2014.SoTh2B.2
Chernysheva, Maria ; Krylov, Alexander ; Mou, Chengbo ; Arif, Raz N. ; Rozhin, Alex ; Rümelli, Mark ; Turitsyn, Sergei K. ; Dianov, Evgeny. / Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser. Specialty Optical Fibers 2014. Optical Society of America, 2014. (OSA technical digest).
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title = "Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser",
abstract = "A thulium-doped all-fibre laser hybrid mode-locked by the co-action of nonlinear polarization evolution and single-walled carbon nanotubes generating 500-fs high-order solitons with the pulse energy 10.87 nJ at 1.9 μm wavelength band is demonstrated.",
author = "Maria Chernysheva and Alexander Krylov and Chengbo Mou and Arif, {Raz N.} and Alex Rozhin and Mark R{\"u}melli and Turitsyn, {Sergei K.} and Evgeny Dianov",
year = "2014",
month = "12",
day = "31",
doi = "10.1364/SOF.2014.SoTh2B.2",
language = "English",
isbn = "978-1-55752-820-9",
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publisher = "Optical Society of America",
booktitle = "Specialty Optical Fibers 2014",

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Chernysheva, M, Krylov, A, Mou, C, Arif, RN, Rozhin, A, Rümelli, M, Turitsyn, SK & Dianov, E 2014, Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser. in Specialty Optical Fibers 2014., paper SoTh2B.2, OSA technical digest, Optical Society of America, Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides / Nonlinear Photonics / Optical Sensors / Specialty Optical Fibers, Barcelona , Spain, 27/07/14. https://doi.org/10.1364/SOF.2014.SoTh2B.2

Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser. / Chernysheva, Maria; Krylov, Alexander; Mou, Chengbo; Arif, Raz N.; Rozhin, Alex; Rümelli, Mark; Turitsyn, Sergei K.; Dianov, Evgeny.

Specialty Optical Fibers 2014. Optical Society of America, 2014. paper SoTh2B.2 (OSA technical digest).

Research output: Chapter in Book/Report/Conference proceedingConference contribution

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T1 - Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser

AU - Chernysheva, Maria

AU - Krylov, Alexander

AU - Mou, Chengbo

AU - Arif, Raz N.

AU - Rozhin, Alex

AU - Rümelli, Mark

AU - Turitsyn, Sergei K.

AU - Dianov, Evgeny

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N2 - A thulium-doped all-fibre laser hybrid mode-locked by the co-action of nonlinear polarization evolution and single-walled carbon nanotubes generating 500-fs high-order solitons with the pulse energy 10.87 nJ at 1.9 μm wavelength band is demonstrated.

AB - A thulium-doped all-fibre laser hybrid mode-locked by the co-action of nonlinear polarization evolution and single-walled carbon nanotubes generating 500-fs high-order solitons with the pulse energy 10.87 nJ at 1.9 μm wavelength band is demonstrated.

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Chernysheva M, Krylov A, Mou C, Arif RN, Rozhin A, Rümelli M et al. Higher-order femtosecond solitons generation in a hybrid mode-locked Tm-doped fibre laser. In Specialty Optical Fibers 2014. Optical Society of America. 2014. paper SoTh2B.2. (OSA technical digest). https://doi.org/10.1364/SOF.2014.SoTh2B.2