Vector solitons in a laser passively mode-locked by single-wall carbon nanotubes

Polarization Rotation Locked Vector Solitons (PRLVSs) are experimentally observed for the first time in a fiber ring laser passively mode-locked by a single-wall carbon nanotube (SWCNT) saturable absorber. Period-doubling of these solitons at certain birefringence values has also been observed. We s...

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Veröffentlicht in:Optics communications 2011-04, Vol.284 (7), p.2007-2011
Hauptverfasser: Wong, Jia Haur, Wu, Kan, Liu, Huan Huan, Ouyang, Chunmei, Wang, Honghai, Aditya, Sheel, Shum, Ping, Fu, Songnian, Kelleher, E.J.R., Chernov, A., Obraztsova, E.D.
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container_end_page 2011
container_issue 7
container_start_page 2007
container_title Optics communications
container_volume 284
creator Wong, Jia Haur
Wu, Kan
Liu, Huan Huan
Ouyang, Chunmei
Wang, Honghai
Aditya, Sheel
Shum, Ping
Fu, Songnian
Kelleher, E.J.R.
Chernov, A.
Obraztsova, E.D.
description Polarization Rotation Locked Vector Solitons (PRLVSs) are experimentally observed for the first time in a fiber ring laser passively mode-locked by a single-wall carbon nanotube (SWCNT) saturable absorber. Period-doubling of these solitons at certain birefringence values has also been observed. We show that fine adjustment to the intracavity birefringence can swing the PRLVSs from period-doubled to period-one state without simultaneous reduction in the pump strength. The timing jitter for both states has also been measured experimentally and discussed analytically using the theoretical framework provided by the Haus model. ► Period-doubling of vector solitons is observed. ► Period-doubled Polarization Rotation Locked Vector Solitons observed for the first time. ► Timing jitter of period-doubling and period-one states of PRLVSs compared.
doi_str_mv 10.1016/j.optcom.2010.12.048
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subjects Birefringence
Lasers
Mathematical analysis
Period-doubling
Polarization rotation locking
Pumps
Ring lasers
Single wall carbon nanotubes
Solitons
Timing jitter
Vector solitons
Vectors (mathematics)
title Vector solitons in a laser passively mode-locked by single-wall carbon nanotubes
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