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Room-temperature subnanosecond waveguide lasers in Nd:YVO4 Q-switched by phase-change VO2: A comparison with 2D materials

机译:通过相变VO2进行Q转换的Nd:YVO4室温亚纳秒波导激光器:与2D材料的比较

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摘要

We report on room-temperature subnanosecond waveguide laser operation at 1064 nm in a Nd:YVO4 crystal waveguide through Q-switching of phase-change nanomaterial vanadium dioxide (VO2). The unique feature of VO2 nanomaterial from the insulating to metallic phases offers low-saturation-intensity nonlinear absorptions of light for subnanosecond pulse generation. The low-loss waveguide is fabricated by using the femtosecond laser writing with depressed cladding geometry. Under optical pump at 808 nm, efficient pulsed laser has been achieved in the Nd:YVO4 waveguide, reaching minimum pulse duration of 690 ps and maximum output average power of 66.7 mW. To compare the Q-switched laser performances by VO2 saturable absorber with those based on two-dimensional materials, the 1064-nm laser pulses have been realized in the same waveguide platform with either graphene or transition metal dichalcogenide (in this work, WS2) coated mirror. The results on 2D material Q-switched waveguide lasers have shown that the shortest pulses are with 22-ns duration, whilst the maximum output average powers reach ~161.9 mW. This work shows the obvious difference on the lasing properties based on phase-change material and 2D materials, and suggests potential applications of VO2 as low-cost saturable absorber for subnanosecond laser generation.
机译:我们通过相变纳米材料二氧化钒(VO2)的Q开关报告了Nd:YVO4晶体波导中1064 10nm的室温亚纳秒波导激光器的工作情况。 VO2纳米材料从绝缘相到金属相的独特特征为亚纳秒脉冲生成提供了低饱和强度的非线性非线性光吸收。低损耗波导是通过使用具有凹陷包层几何形状的飞秒激光写入来制造的。在808 nm的光泵浦下,在Nd:YVO4波导中实现了高效的脉冲激光,最小脉冲持续时间为690 ps,最大输出平均功率为66.7 mW。为了将VO2饱和吸收体与基于二维材料的Q开关激光性能进行比较,已经在涂有石墨烯或过渡金属二卤化钴(在此工作中为WS2)的同一波导平台中实现了1064 nm激光脉冲。镜子。二维材料调Q波导激光器的结果表明,最短脉冲的持续时间为22 ns,而最大输出平均功率达到〜161.916mW。这项工作显示了基于相变材料和2D材料的激光性能的明显差异,并暗示了VO2作为低成本可饱和吸收剂在亚纳秒激光产生中的潜在应用。

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