Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm

Rasmus Kongsgaard Olsson, T.V. Andersen, Lasse Leick, Vita Solovyeva, Peter Uhd Jepsen, Dmitry Turchinovich

Publikation: Bidrag til bog/antologi/rapport/konference-proceedingBidrag til bog/antologiForskning

Resumé

We present an effective solution for an all-polarization-maintaining modelocked femtosecond fiber laser operating at the central wavelength of 1028 nm. The laser is based on an Yb-doped active fiber. Modelocking is enabled by a semiconductor saturable absorber mirror, and the central wavelength is enforced by a fiber Bragg grating. The laser is self-starting and demonstrates excellent stability against Q-switching. Pulse energies reach 13 nJ at 34 MHz repetition rate. External compression leads to near transform-limited pulses of 140 fs.
OriginalsprogEngelsk
TitelProceedings of SPIE - The International Society for Optical Engineering
Vol/bind7022
ForlagSPIE - International Society for Optical Engineering
Publikationsdato1. jan. 2008
ISBN (Trykt)9780819472359
DOI
StatusUdgivet - 1. jan. 2008

Fingeraftryk

fiber lasers
fibers
polarization
pulses
wavelengths
Bragg gratings
lasers
repetition
absorbers
mirrors
energy

Citer dette

Olsson, R. K., Andersen, T. V., Leick, L., Solovyeva, V., Jepsen, P. U., & Turchinovich, D. (2008). Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm. I Proceedings of SPIE - The International Society for Optical Engineering (Bind 7022). SPIE - International Society for Optical Engineering. https://doi.org/10.1117/12.804117
Olsson, Rasmus Kongsgaard ; Andersen, T.V. ; Leick, Lasse ; Solovyeva, Vita ; Jepsen, Peter Uhd ; Turchinovich, Dmitry. / Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm. Proceedings of SPIE - The International Society for Optical Engineering. Bind 7022 SPIE - International Society for Optical Engineering, 2008.
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Olsson, RK, Andersen, TV, Leick, L, Solovyeva, V, Jepsen, PU & Turchinovich, D 2008, Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm. i Proceedings of SPIE - The International Society for Optical Engineering. bind 7022, SPIE - International Society for Optical Engineering. https://doi.org/10.1117/12.804117

Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm. / Olsson, Rasmus Kongsgaard; Andersen, T.V.; Leick, Lasse; Solovyeva, Vita; Jepsen, Peter Uhd; Turchinovich, Dmitry.

Proceedings of SPIE - The International Society for Optical Engineering. Bind 7022 SPIE - International Society for Optical Engineering, 2008.

Publikation: Bidrag til bog/antologi/rapport/konference-proceedingBidrag til bog/antologiForskning

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N2 - We present an effective solution for an all-polarization-maintaining modelocked femtosecond fiber laser operating at the central wavelength of 1028 nm. The laser is based on an Yb-doped active fiber. Modelocking is enabled by a semiconductor saturable absorber mirror, and the central wavelength is enforced by a fiber Bragg grating. The laser is self-starting and demonstrates excellent stability against Q-switching. Pulse energies reach 13 nJ at 34 MHz repetition rate. External compression leads to near transform-limited pulses of 140 fs.

AB - We present an effective solution for an all-polarization-maintaining modelocked femtosecond fiber laser operating at the central wavelength of 1028 nm. The laser is based on an Yb-doped active fiber. Modelocking is enabled by a semiconductor saturable absorber mirror, and the central wavelength is enforced by a fiber Bragg grating. The laser is self-starting and demonstrates excellent stability against Q-switching. Pulse energies reach 13 nJ at 34 MHz repetition rate. External compression leads to near transform-limited pulses of 140 fs.

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Olsson RK, Andersen TV, Leick L, Solovyeva V, Jepsen PU, Turchinovich D. Femtosecond all-polarization-maintaining fiber laser operating at 1028 nm. I Proceedings of SPIE - The International Society for Optical Engineering. Bind 7022. SPIE - International Society for Optical Engineering. 2008 https://doi.org/10.1117/12.804117