Graphene Q-switched Er,Yb:GdAl 3 (BO 3 ) 4 laser at 1550  nm

A single-layer graphene saturable absorber is employed for passive Q-switching of an Er, Yb:GdAl (BO ) (Er,Yb:GdAB) compact laser, representing the first Er-doped oxoborate laser Q-switched by graphene. This laser is based on a c-cut 1.8 at. % Er , 15 at. % Yb :GdAB crystal diode-pumped at 0.976 μm....

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Veröffentlicht in:Applied Optics 2017-06, Vol.56 (16), p.4745
Hauptverfasser: Gorbachenya, Konstantin, Kisel, Viktor, Yasukevich, Anatoly, Loiko, Pavel, Mateos, Xavier, Maltsev, Viktor, Leonyuk, Nikolai, Aguiló, Magdalena, Díaz, Francesc, Griebner, Uwe, Petrov, Valentin, Kuleshov, Nikolai
Format: Artikel
Sprache:eng
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Zusammenfassung:A single-layer graphene saturable absorber is employed for passive Q-switching of an Er, Yb:GdAl (BO ) (Er,Yb:GdAB) compact laser, representing the first Er-doped oxoborate laser Q-switched by graphene. This laser is based on a c-cut 1.8 at. % Er , 15 at. % Yb :GdAB crystal diode-pumped at 0.976 μm. It generates a maximum average output power of 360 mW at 1.55 μm with a slope efficiency of 23% (with respect to the incident power). Stable ∼1  μJ/130  ns pulses are achieved at a repetition rate of 400 kHz. This result represents, to the best of our knowledge, the shortest pulse duration ever achieved in bulk Er lasers Q-switched by 2D materials. Graphene is a promising material for generating nanosecond pulses at high repetition rates (MHz range) in Er-doped oxoborate lasers emitting in the eye-safe range at 1.5-1.7 μm.
ISSN:0003-6935
2155-3165
1539-4522
DOI:10.1364/AO.56.004745