Presentation 2006-08-24
Generation of 1.0-1.7μm Wavelength-Tunable Ultrashort Pulses Using Passively Mode-Locked Ytterbium-Doped Fiber Laser
Jun TAKAYANAGI, Toshiharu SUGIURA, Makoto YOSHIDA, Norihiko NISHIZAWA,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Widely wavelength-tunable ultrashort pulse fiber laser source has been demonstrated using a high-power mode-locked Ytterbium-doped-fiber laser and a highly-nonlinear photonic crystal fiber. The Ytterbium-doped-fiber laser produces 66-fs ultrashort pulses at the wavelength of 1.05μm. The pulse energy and the peak power are 2nJ and 20kW, respectively. By injecting these pulses into the highly nonlinear photonic crystal fiber, soliton and anti-stokes pulses are generated in the wavelength regions of 1.05-1.69 and 0.6-0.7μm, respectively. The generated soliton pulses are transform-limited sech^2-shaped pulses.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Ultrashort Pulse / Fiber Laser / Fiber Nonlinearity / Optical Soliton / Wavelength-Tunable Source
Paper # OCS2006-31
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Conference Information
Committee OCS
Conference Date 2006/8/17(1days)
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Registration To Optical Communication Systems (OCS)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Generation of 1.0-1.7μm Wavelength-Tunable Ultrashort Pulses Using Passively Mode-Locked Ytterbium-Doped Fiber Laser
Sub Title (in English)
Keyword(1) Ultrashort Pulse
Keyword(2) Fiber Laser
Keyword(3) Fiber Nonlinearity
Keyword(4) Optical Soliton
Keyword(5) Wavelength-Tunable Source
1st Author's Name Jun TAKAYANAGI
1st Author's Affiliation Department of Quantum Engineering, Nagoya University()
2nd Author's Name Toshiharu SUGIURA
2nd Author's Affiliation AISIN SEIKI Co., Ltd.
3rd Author's Name Makoto YOSHIDA
3rd Author's Affiliation AISIN SEIKI Co., Ltd.
4th Author's Name Norihiko NISHIZAWA
4th Author's Affiliation Department of Quantum Engineering, Nagoya University
Date 2006-08-24
Paper # OCS2006-31
Volume (vol) vol.106
Number (no) 210
Page pp.pp.-
#Pages 5
Date of Issue