Large-mode-area soliton fiber oscillator mode-locked using NPE in an all-PM self-stabilized interferometer

In this work, we investigate an approach to scale up the output pulse energy in an all-polarization-maintaining 17.3 MHz Yb-doped fiber oscillator via implementation of a 25 µm core-diameter large-mode-area fiber. The artificial saturable absorber is based on a Kerr-type linear self-stabilized fiber...

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Veröffentlicht in:Applied optics (2004) 2023-03, Vol.62 (7), p.1672-1676
Hauptverfasser: Edelmann, Marvin, Sedigheh, Malek M, Hua, Yi, Vargas, Erwin C, Pergament, Mikhail, Kärtner, Franz X
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container_end_page 1676
container_issue 7
container_start_page 1672
container_title Applied optics (2004)
container_volume 62
creator Edelmann, Marvin
Sedigheh, Malek M
Hua, Yi
Vargas, Erwin C
Pergament, Mikhail
Kärtner, Franz X
description In this work, we investigate an approach to scale up the output pulse energy in an all-polarization-maintaining 17.3 MHz Yb-doped fiber oscillator via implementation of a 25 µm core-diameter large-mode-area fiber. The artificial saturable absorber is based on a Kerr-type linear self-stabilized fiber interferometer, enabling non-linear polarization rotation in polarization-maintaining fibers. Highly stable mode-locked steady states in the soliton-like operation regime are demonstrated with 170 mW average output power and a total output pulse energy of ∼10 distributed between two output ports. An experimental parameter comparison with a reference oscillator constructed with 5.5 µm core-sized standard fiber components reveals an increase of pulse energy by a factor of 36 with simultaneously reduced intensity noise in the high-frequency range >100 .
doi_str_mv 10.1364/AO.482184
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source Alma/SFX Local Collection; Optica Publishing Group Journals
subjects Doped fibers
Frequency ranges
Interferometers
Linear polarization
Noise intensity
Oscillators
Solitary waves
title Large-mode-area soliton fiber oscillator mode-locked using NPE in an all-PM self-stabilized interferometer
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