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Efficient laser emission from cladding waveguide inscribed in Nd:GdVO_4 crystal by direct femtosecond laser writing

机译:直接飞秒激光写入从Nd:GdVO_4晶体中刻写的包层波导中的有效激光发射

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摘要

We report on the fabrication of depressed cladding waveguides in Nd:GdVO_4 laser crystal by using femtosecond laser inscription. The cross section of the structure is a circular shape with a diameter of 150 μm. Under the optical pump at 808 nm, the continuous wave (cw) as well as pulsed (Q-switched by graphene saturable absorber) waveguide lasing at 1064 nm has been realized, supporting guidance of both TE and TM polarizations. The maximum output power of 0.57 W was obtained in the cw regime, while the maximum pulse energy of the pulsed laser emissions was up to 19 nJ (corresponding to a maximum average output power of 0.33 W, at a resonant frequency of 18 MHz). The slope efficiencies achieved for the cw and pulsed Nd:GdVO_4 waveguide lasers were as high as 68% and 52%, respectively.
机译:我们报告了使用飞秒激光铭文在Nd:GdVO_4激光晶体中制作凹陷的包层波导的过程。该结构的横截面是直径为150μm的圆形。在808 nm的光泵下,已经实现了连续波(cw)以及1064 nm的脉冲(通过石墨烯可饱和吸收剂进行Q开关)激射,支持TE和TM偏振的引导。在连续波模式中获得了最大输出功率0.57 W,而脉冲激光发射的最大脉冲能量高达19 nJ(对应于18 MHz的谐振频率下的最大平均输出功率0.33 W)。连续波和脉冲Nd:GdVO_4波导激光器实现的斜率效率分别高达68%和52%。

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