Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes

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

Abstract

We study polarization dynamics of a harmonic mode-locked erbium-doped fiber laser with carbon nanotubes absorber. New types of vector solitons are shown for multi-pulse and harmonic mode-locked operation with locked, switching and precessing polarization states.

Original languageEnglish
Title of host publicationCLEO: applications and technology / QELS_fundamental science 2014
PublisherOptical Society of America
ISBN (Print)978-1-55752-999-2
DOIs
Publication statusPublished - 2014
Event2014 Conference on Lasers and Electro-Optics - San Jose, CA, United States
Duration: 8 Jun 201413 Jun 2014

Publication series

NameOSA technical digest
PublisherOptical Society of America

Conference

Conference2014 Conference on Lasers and Electro-Optics
Abbreviated titleCLEO 2014
CountryUnited States
CitySan Jose, CA
Period8/06/1413/06/14

Fingerprint

Mode-locked fiber lasers
fiber lasers
Carbon nanotubes
carbon nanotubes
Polarization
harmonics
Erbium
polarization
Fiber lasers
Laser modes
Solitons
erbium
absorbers
solitary waves
pulses

Cite this

Habruseva, T., Sergeyev, S., & Turitsyn, S. K. (2014). Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes. In CLEO: applications and technology / QELS_fundamental science 2014 [paper JTh2A.26] (OSA technical digest). Optical Society of America. https://doi.org/10.1364/CLEO_AT.2014.JTh2A.26
Habruseva, Tatiana ; Sergeyev, Sergey ; Turitsyn, Sergei K. / Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes. CLEO: applications and technology / QELS_fundamental science 2014. Optical Society of America, 2014. (OSA technical digest).
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abstract = "We study polarization dynamics of a harmonic mode-locked erbium-doped fiber laser with carbon nanotubes absorber. New types of vector solitons are shown for multi-pulse and harmonic mode-locked operation with locked, switching and precessing polarization states.",
author = "Tatiana Habruseva and Sergey Sergeyev and Turitsyn, {Sergei K.}",
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Habruseva, T, Sergeyev, S & Turitsyn, SK 2014, Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes. in CLEO: applications and technology / QELS_fundamental science 2014., paper JTh2A.26, OSA technical digest, Optical Society of America, 2014 Conference on Lasers and Electro-Optics, San Jose, CA, United States, 8/06/14. https://doi.org/10.1364/CLEO_AT.2014.JTh2A.26

Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes. / Habruseva, Tatiana; Sergeyev, Sergey; Turitsyn, Sergei K.

CLEO: applications and technology / QELS_fundamental science 2014. Optical Society of America, 2014. paper JTh2A.26 (OSA technical digest).

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

TY - GEN

T1 - Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes

AU - Habruseva, Tatiana

AU - Sergeyev, Sergey

AU - Turitsyn, Sergei K.

PY - 2014

Y1 - 2014

N2 - We study polarization dynamics of a harmonic mode-locked erbium-doped fiber laser with carbon nanotubes absorber. New types of vector solitons are shown for multi-pulse and harmonic mode-locked operation with locked, switching and precessing polarization states.

AB - We study polarization dynamics of a harmonic mode-locked erbium-doped fiber laser with carbon nanotubes absorber. New types of vector solitons are shown for multi-pulse and harmonic mode-locked operation with locked, switching and precessing polarization states.

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U2 - 10.1364/CLEO_AT.2014.JTh2A.26

DO - 10.1364/CLEO_AT.2014.JTh2A.26

M3 - Conference contribution

SN - 978-1-55752-999-2

T3 - OSA technical digest

BT - CLEO: applications and technology / QELS_fundamental science 2014

PB - Optical Society of America

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Habruseva T, Sergeyev S, Turitsyn SK. Polarization attractors in harmonic mode-locked fiber laser with carbon nanotubes. In CLEO: applications and technology / QELS_fundamental science 2014. Optical Society of America. 2014. paper JTh2A.26. (OSA technical digest). https://doi.org/10.1364/CLEO_AT.2014.JTh2A.26