Epitaxial growth of rare-earth-ion-activated KY(1-x-y)Gd(x)Lu(y)(WO4)2 co-doped thin layers onto KY(WO4)2 substrates has enabled lattice-matched waveguides with high refractive-index contract and large variation of the active rare-earth-ion concentration. In Yb3+-activated micro-structured channel waveguides, we demonstrated lasers with 418 mW of continuous-wave output power at 1023 nm and a slope efficiency of 71% versus launched pump power at 981 nm. Channel waveguide lasers operating on the 981-nm zero-phonon line were demonstrated under pumping at 934 nm with an output power of 650 mW and a slope efficiency of 76% versus absorbed pump power. Lasing with a record-low quantum defect of 0.7% was achieved. In a feasibility study, a device c...
Fundamental-mode channel waveguide lasers, while offering high pump and signal intensities and excel...
Tm(1.5%)-Gd(29.5%)-Lu(25%) co-doped KY(WO4)2 layers were grown onto KY(WO4)2 substrates by liquid-ph...
In KGd1-xLux(WO4)2:Yb3+ channel waveguides grown onto KY(WO4)2 substrates by liquid phase epitaxy an...
In this work the technology of Gd3+ and Lu3+ co-doped KY(WO4)2:Yb3+ thin films grown onto pure KY(WO...
The potassium double tungstates KGd(WO4)2, KY(WO4)2, and KLu(WO4)2 are excellent candidates for soli...
The potassium double tungstates KY(WO4)2, KGd(WO4)2, and KLu(WO4)2, are excellent host materials for...
Waveguide lasing is achieved in crystalline Gd3+, Lu3+ co-doped KY(WO4)2:Yb3+ (KYW) thin layers grow...
Channel waveguide lasers operating at 981 nm are demonstrated in KY1−x−yGdxLuy(WO4)2:Yb3+ waveguides...
A double tungstate waveguide with high refractive index contract between layer and substrate is grow...
Several fields, including optical communications, bio-sensing, health, and safety, will greatly bene...
High-quality crystalline $KY(WO_4)_2:Yb^{3+}$ layers codoped with large concentrations of optically ...
Buried ridge waveguides are microstructured into a monoclinic potassium double tungstate layer with ...
It has been recognized that the monoclinic double tungstates KY(WO4)2, KGd(WO4)2, and KLu(WO4)2 poss...
High-quality crystalline $KY(WO_4)_2:Yb^{3+}$ layers codoped with large concentrations of optically ...
The subject of this thesis is the development of 2-μm rare-earth lasers in thuliumdoped yttrium-gado...
Fundamental-mode channel waveguide lasers, while offering high pump and signal intensities and excel...
Tm(1.5%)-Gd(29.5%)-Lu(25%) co-doped KY(WO4)2 layers were grown onto KY(WO4)2 substrates by liquid-ph...
In KGd1-xLux(WO4)2:Yb3+ channel waveguides grown onto KY(WO4)2 substrates by liquid phase epitaxy an...
In this work the technology of Gd3+ and Lu3+ co-doped KY(WO4)2:Yb3+ thin films grown onto pure KY(WO...
The potassium double tungstates KGd(WO4)2, KY(WO4)2, and KLu(WO4)2 are excellent candidates for soli...
The potassium double tungstates KY(WO4)2, KGd(WO4)2, and KLu(WO4)2, are excellent host materials for...
Waveguide lasing is achieved in crystalline Gd3+, Lu3+ co-doped KY(WO4)2:Yb3+ (KYW) thin layers grow...
Channel waveguide lasers operating at 981 nm are demonstrated in KY1−x−yGdxLuy(WO4)2:Yb3+ waveguides...
A double tungstate waveguide with high refractive index contract between layer and substrate is grow...
Several fields, including optical communications, bio-sensing, health, and safety, will greatly bene...
High-quality crystalline $KY(WO_4)_2:Yb^{3+}$ layers codoped with large concentrations of optically ...
Buried ridge waveguides are microstructured into a monoclinic potassium double tungstate layer with ...
It has been recognized that the monoclinic double tungstates KY(WO4)2, KGd(WO4)2, and KLu(WO4)2 poss...
High-quality crystalline $KY(WO_4)_2:Yb^{3+}$ layers codoped with large concentrations of optically ...
The subject of this thesis is the development of 2-μm rare-earth lasers in thuliumdoped yttrium-gado...
Fundamental-mode channel waveguide lasers, while offering high pump and signal intensities and excel...
Tm(1.5%)-Gd(29.5%)-Lu(25%) co-doped KY(WO4)2 layers were grown onto KY(WO4)2 substrates by liquid-ph...
In KGd1-xLux(WO4)2:Yb3+ channel waveguides grown onto KY(WO4)2 substrates by liquid phase epitaxy an...