Quasi-four-level co-doped Tm/Ho gadolinium vanadate laser
Youlun Ju
Abstract
Youlun Ju
Abstract
Based on considering kinetic evolution of the emissions of both ions,the basic processes of energy transfer between thulium(Tm) and holmium(Ho) was analyzed,the quasi-four-level rate equation of thulium(Tm)/holmium(Ho) doped gadolinium vanadate(Tm/Ho∶GdVO_4) are given.The expression about threshold pump power and slope efficiency are concluded.At liquid nitrogen cooled temperature the operation of 2μm Tm/Ho∶GdVO_4 laser end-pumped by fiber-coupled laser diode(LD) is achieved experimentally.At 14W pump power the maximum 3.5W output power,optical-optical conversion efficiency of 25%,slope efficiency of 26.6% and pumping threshold of 838mW were obtained,theoretical results with experiment results are good agreement.The observed green fluorescence duo to result of up-conversion effect is also analyzed.
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Based on considering kinetic evolution of the emissions of both ions,the basic processes of energy transfer between thulium(Tm) and holmium(Ho) was analyzed,the quasi-four-level rate equation of thulium(Tm)/holmium(Ho) doped gadolinium vanadate(Tm/Ho∶GdVO_4) are given.The expression about threshold pump power and slope efficiency are concluded.At liquid nitrogen cooled temperature the operation of 2μm Tm/Ho∶GdVO_4 laser end-pumped by fiber-coupled laser diode(LD) is achieved experimentally.At 14W pump power the maximum 3.5W output power,optical-optical conversion efficiency of 25%,slope efficiency of 26.6% and pumping threshold of 838mW were obtained,theoretical results with experiment results are good agreement.The observed green fluorescence duo to result of up-conversion effect is also analyzed.
Key concepts: Thulium, Holmium, Materials science, Slope efficiency, Gadolinium, Vanadate, Energy conversion efficiency, Doping