Picosecond pulse amplification up to a peak power of 42  W by a quantum-dot tapered optical amplifier and a mode-locked laser emitting at 1.26 µm

We experimentally study the generation and amplification of stable picosecond-short optical pulses by a master oscillator power-amplifier configuration consisting of a monolithic quantum-dot-based gain-guided tapered laser and amplifier emitting at 1.26 µm without pulse compression, external cavity,...

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Veröffentlicht in:Optics letters 2015-02, Vol.40 (3), p.395-398
Hauptverfasser: Weber, Christoph, Drzewietzki, Lukas, Rossetti, Mattia, Xu, Tianhong, Bardella, Paolo, Simos, Hercules, Mesaritakis, Charis, Ruiz, Mike, Krestnikov, Igor, Livshits, Daniil, Krakowski, Michel, Syvridis, Dimitris, Montrosset, Ivo, Rafailov, Edik U, Elsäßer, Wolfgang, Breuer, Stefan
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Sprache:eng
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Zusammenfassung:We experimentally study the generation and amplification of stable picosecond-short optical pulses by a master oscillator power-amplifier configuration consisting of a monolithic quantum-dot-based gain-guided tapered laser and amplifier emitting at 1.26 µm without pulse compression, external cavity, gain- or Q-switched operation. We report a peak power of 42 W and a figure-of-merit for second-order nonlinear imaging of 38.5  W2 at a repetition rate of 16 GHz and an associated pulse width of 1.37 ps.
ISSN:0146-9592
1539-4794
DOI:10.1364/OL.40.000395