Single-walled carbon nanotubes on side polished fiber as a universal saturable absorber for various laser output states

We demonstrated four different laser operational states in the same passive fiber ring laser cavity by controlling solely the polarization state in a saturable absorber. The demonstrated laser operational states were continuous wave, mode-locking, Q-switching, and Q-switched mode-locking. The satura...

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Published inCurrent applied physics Vol. 17; no. 1; pp. 37 - 40
Main Authors Ko, Jaekwon, Jeong, Hwanseong, Choi, Sun Young, Rotermund, Fabian, Yeom, Dong-Il, Kim, Byoung Yoon
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.01.2017
한국물리학회
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Online AccessGet full text
ISSN1567-1739
1878-1675
DOI10.1016/j.cap.2016.10.019

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Abstract We demonstrated four different laser operational states in the same passive fiber ring laser cavity by controlling solely the polarization state in a saturable absorber. The demonstrated laser operational states were continuous wave, mode-locking, Q-switching, and Q-switched mode-locking. The saturable absorber was fabricated by spin-coating a single-walled carbon nanotubes (SWCNT)/polymer composite on a side polished fiber providing enhanced nonlinear interaction with the SWCNT. The wide tuning range of the saturable absorber allows the simple means to generate different forms of laser output from a single laser cavity. •Four different laser states are demonstrated in a single fiber laser cavity.•Based on SWCNT saturable absorber with widely tunable polarization dependence.•Linear and nonlinear transmission of SWCNT saturable absorber are analyzed.
AbstractList We demonstrated four different laser operational states in the same passive fiber ring laser cavity by controlling solely the polarization state in a saturable absorber. The demonstrated laser operational states were continuous wave, mode-locking, Q-switching, and Q-switched mode-locking. The saturable absorber was fabricated by spin-coating a single-walled carbon nanotubes (SWCNT)/polymer composite on a side polished fiber providing enhanced nonlinear interaction with the SWCNT. The wide tuning range of the saturable absorber allows the simple means to generate different forms of laser output from a single laser cavity. KCI Citation Count: 3
We demonstrated four different laser operational states in the same passive fiber ring laser cavity by controlling solely the polarization state in a saturable absorber. The demonstrated laser operational states were continuous wave, mode-locking, Q-switching, and Q-switched mode-locking. The saturable absorber was fabricated by spin-coating a single-walled carbon nanotubes (SWCNT)/polymer composite on a side polished fiber providing enhanced nonlinear interaction with the SWCNT. The wide tuning range of the saturable absorber allows the simple means to generate different forms of laser output from a single laser cavity. •Four different laser states are demonstrated in a single fiber laser cavity.•Based on SWCNT saturable absorber with widely tunable polarization dependence.•Linear and nonlinear transmission of SWCNT saturable absorber are analyzed.
Author Jeong, Hwanseong
Rotermund, Fabian
Yeom, Dong-Il
Choi, Sun Young
Ko, Jaekwon
Kim, Byoung Yoon
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  organization: Department of Physics and Department of Energy Systems Research, Ajou University, Worldcup-ro, Yeongtong-gu, Suwon, 16499, South Korea
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  givenname: Byoung Yoon
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  email: yoonkim@kaist.ac.kr
  organization: Department of Physics, KAIST, 291, Daehak-ro, Yuseong-gu, Daejeon, 34141, South Korea
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Keywords Mode locked lasers
Passive fiber lasers
Q-switched lasers
Single-walled carbon nanotubes
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Snippet We demonstrated four different laser operational states in the same passive fiber ring laser cavity by controlling solely the polarization state in a saturable...
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elsevier
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StartPage 37
SubjectTerms Mode locked lasers
Passive fiber lasers
Q-switched lasers
Single-walled carbon nanotubes
물리학
Title Single-walled carbon nanotubes on side polished fiber as a universal saturable absorber for various laser output states
URI https://dx.doi.org/10.1016/j.cap.2016.10.019
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