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1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes

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1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes. / Gumenyuk, Regina; Puustinen, Janne; Shubin, Alexey V.; Bufetov, Igor A.; Dianov, Evgueny M.; Okhotnikov, Oleg G.

In: Optics Letters, Vol. 38, No. 20, 15.10.2013, p. 4005-4007.

Research output: Contribution to journalArticleScientificpeer-review

Harvard

Gumenyuk, R, Puustinen, J, Shubin, AV, Bufetov, IA, Dianov, EM & Okhotnikov, OG 2013, '1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes', Optics Letters, vol. 38, no. 20, pp. 4005-4007. https://doi.org/10.1364/OL.38.004005

APA

Gumenyuk, R., Puustinen, J., Shubin, A. V., Bufetov, I. A., Dianov, E. M., & Okhotnikov, O. G. (2013). 1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes. Optics Letters, 38(20), 4005-4007. https://doi.org/10.1364/OL.38.004005

Vancouver

Author

Gumenyuk, Regina ; Puustinen, Janne ; Shubin, Alexey V. ; Bufetov, Igor A. ; Dianov, Evgueny M. ; Okhotnikov, Oleg G. / 1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes. In: Optics Letters. 2013 ; Vol. 38, No. 20. pp. 4005-4007.

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@article{75de00eda415473f8b12c832ed2f874e,
title = "1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes",
abstract = "We demonstrate a 1.32 mu m mode-locked bismuth fiber laser operating in both anomalous and normal dispersion regimes. In anomalous dispersion regime, achieved by using 13 nm/cm linearly chirped fiber Bragg grating, the laser exhibits multiple soliton operation with pulse duration of 2.51 ps. With the net normal cavity dispersion, the single-pulse operation with higher power has been obtained by avoiding the limitations generic to conservative soliton systems. (C) 2013 Optical Society of America",
keywords = "SEMICONDUCTOR DISK LASER, SOLITONS, PULSES",
author = "Regina Gumenyuk and Janne Puustinen and Shubin, {Alexey V.} and Bufetov, {Igor A.} and Dianov, {Evgueny M.} and Okhotnikov, {Oleg G.}",
note = "Contribution: organisation=orc,FACT1=1<br/>Portfolio EDEND: 2013-10-29<br/>Publisher name: Optical Society of America - OSA",
year = "2013",
month = "10",
day = "15",
doi = "10.1364/OL.38.004005",
language = "English",
volume = "38",
pages = "4005--4007",
journal = "Optics Letters",
issn = "0146-9592",
publisher = "OPTICAL SOC AMER",
number = "20",

}

RIS (suitable for import to EndNote) - Download

TY - JOUR

T1 - 1.32 μm mode-locked bismuth-doped fiber laser operating in anomalous and normal dispersion regimes

AU - Gumenyuk, Regina

AU - Puustinen, Janne

AU - Shubin, Alexey V.

AU - Bufetov, Igor A.

AU - Dianov, Evgueny M.

AU - Okhotnikov, Oleg G.

N1 - Contribution: organisation=orc,FACT1=1<br/>Portfolio EDEND: 2013-10-29<br/>Publisher name: Optical Society of America - OSA

PY - 2013/10/15

Y1 - 2013/10/15

N2 - We demonstrate a 1.32 mu m mode-locked bismuth fiber laser operating in both anomalous and normal dispersion regimes. In anomalous dispersion regime, achieved by using 13 nm/cm linearly chirped fiber Bragg grating, the laser exhibits multiple soliton operation with pulse duration of 2.51 ps. With the net normal cavity dispersion, the single-pulse operation with higher power has been obtained by avoiding the limitations generic to conservative soliton systems. (C) 2013 Optical Society of America

AB - We demonstrate a 1.32 mu m mode-locked bismuth fiber laser operating in both anomalous and normal dispersion regimes. In anomalous dispersion regime, achieved by using 13 nm/cm linearly chirped fiber Bragg grating, the laser exhibits multiple soliton operation with pulse duration of 2.51 ps. With the net normal cavity dispersion, the single-pulse operation with higher power has been obtained by avoiding the limitations generic to conservative soliton systems. (C) 2013 Optical Society of America

KW - SEMICONDUCTOR DISK LASER

KW - SOLITONS

KW - PULSES

UR - http://www.scopus.com/inward/record.url?scp=84885986228&partnerID=8YFLogxK

U2 - 10.1364/OL.38.004005

DO - 10.1364/OL.38.004005

M3 - Article

VL - 38

SP - 4005

EP - 4007

JO - Optics Letters

JF - Optics Letters

SN - 0146-9592

IS - 20

ER -