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通过直接飞秒激光写入技术在Nd:YVO4中实现的凹陷包层波导的高效激光发射,采用二极管激光泵浦到发射能级。

Diode-laser pumping into the emitting level for efficient lasing of depressed cladding waveguides realized in Nd:YVO4 by the direct femtosecond-laser writing technique.

作者信息

Pavel Nicolaie, Salamu Gabriela, Jipa Florin, Zamfirescu Marian

出版信息

Opt Express. 2014 Sep 22;22(19):23057-65. doi: 10.1364/OE.22.023057.

Abstract

Depressed cladding waveguides have been realized in Nd:YVO(4) employing direct writing technique with a femtosecond-laser beam. It was shown that the output performances of such laser devices are improved by the reduction of the quantum defect between the pump wavelength and the laser wavelength. Thus, under the classical pump at 808 nm (i.e. into the (4)F(5/2) level), a 100-μm diameter circular waveguide inscribed in a 0.7-at.% Nd:YVO(4) outputted 1.06-μm laser pulses with 3.0-mJ energy, at 0.30 optical efficiency and slope efficiency of 0.32. The pump at 880 nm (i.e.directly into the (4)F(3/2) emitting level) increased the pulse energy at 3.8 mJ and improved both optical efficiency and slope efficiency at 0.36 and 0.39, respectively. The same waveguide yielded continuous-wave 1.5-W output power at 1.06 μm under the pump at 880 nm. Laser emission at 1.34 μm was also improved using the pump into the (4)F(3/2) emitting level of Nd:YVO(4).

摘要

利用飞秒激光束的直接写入技术,在掺钕钒酸钇(Nd:YVO₄)中实现了凹陷包层波导。结果表明,通过减小泵浦波长与激光波长之间的量子缺陷,此类激光器件的输出性能得到了改善。因此,在808 nm的传统泵浦(即泵浦到⁴F₅/₂能级)下,刻写在0.7原子百分比的Nd:YVO₄中的直径为100μm的圆形波导输出了能量为3.0 mJ的1.06μm激光脉冲,光学效率为0.30,斜率效率为0.32。880 nm的泵浦(即直接泵浦到⁴F₃/₂发射能级)使脉冲能量增加到3.8 mJ,并分别将光学效率和斜率效率提高到0.36和0.39。在880 nm的泵浦下,同一波导在1.06μm处产生了1.5 W的连续波输出功率。利用泵浦到Nd:YVO₄的⁴F₃/₂发射能级,1.34μm的激光发射也得到了改善。

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