Sesquioxides combine excellent thermomechanical properties, comparably low phonon energies and a strong crystal field, making them ideally suited for broad band emitting high power laser materials in the infrared and mid-infrared spectral range. In this paper, the latest progress on diode pumped highly efficient high-power solid-state lasers based on rare-earth doped sesquioxides, Lu 2 O 3 , Sc 2 O 3 , and Y 2 O 3 , as well as different mixed sesquioxides (Lu a Sc b Y c ) 2 O 3 with a + b + c = 1 is reviewed. While Yb 3+ -doped sesquioxides allow for record high efficiencies at several 100 W of output power in continuous wave operation and record high average powers in pulsed mode in the 1-μm spectral range, Tm 3+ - and Ho 3+ -doped sesquioxides enable efficient broad band laser operation and ultrashort pulse duration around 2 μm. Finally, Er 3+ -doped sesquioxides enabled the highest efficiencies and output powers demonstrated so far at room temperature in the mid-infrared range at 3 μm.
No takes yet. Share an insight, caveat, or question.
Christian Kränkel (2014) studied this question.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: