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Laser operation and spectroscopic investigations of Tm:LuScO3

机译:Tm:LuScO 3 的激光操作和光谱学研究

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The increasing interest in 2 µm laser systems can be attributed to their large number of applications e.g. in medicine, remote sensing, and gas detection. Thulium doped solid-state lasers offer excellent properties for the generation of 2 µm laser radiation, since they can be pumped at around 800 nm, where high performance laser diodes are available, while due to a cross relaxation process a quantum efficiency of up to two can be achieved. Sesquioxides offer great properties as host crystals for thulium doping, such as strong Stark splitting, high thermal conductivities and low phonon energies. Recently efficient high power laser operation could be achieved in Tm:Lu2O3 and Tm:Sc2O3 [1,2] and preliminary results on mode-locking of Tm:Lu2O3 with carbon nanotube saturable absorbers were obtained [3]. Especially for mode-locking broad and smooth emission spectra are essential for obtaining ultra short pulse lengths.
机译:人们对2 µm激光系统越来越感兴趣,这可归因于其大量的应用,例如:在医学,遥感和气体检测领域。掺固态激光器具有出色的性能,可产生2 µm的激光辐射,因为它们可以泵浦800 nm左右的波长,在这种情况下可以使用高性能的激光二极管,而由于交叉弛豫工艺,量子效率高达2可以实现。癸二氧化物作为great掺杂的主体晶体具有出色的性能,例如强斯塔克分裂,高导热率和低声子能量。最近,可以在Tm:Lu 2 O 3 和Tm:Sc 2 O 3 [1,2],并获得了碳纳米管可饱和吸收剂对Tm:Lu 2 O 3 锁模的初步结果[3]。特别是对于锁模,宽而平滑的发射光谱对于获得超短脉冲长度至关重要。

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