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Sum frequency generation of continuously tunable blue pulses from a two-branch femtosecond fiber source

机译:来自两分支飞秒光纤源的连续可调蓝色脉冲的总和频率生成

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摘要

We report on the generation of femtosecond blue pulses from a two-branch mode-locked erbium-doped fiber source. This is achieved by sum-frequency mixing in β-barium borate between the frequency doubled laser radiation at 770 nm and a tunable near-infrared component generated inside a highly nonlinear fiber. Small angle tuning of the nonlinear crystal leads to a continuously variable output wavelength in the visible band between 460 nm and 500 nm. Average power levels exceeding 1.5 mW were collected throughout the entire tuning range of our device, which delivered sub-300-fs pulses at a repetition rate of 98 MHz. These values indicate that the input near-infrared radiation is up-converted with a photon efficiency of 20%
机译:我们报告了由两分支锁模掺光纤源产生的飞秒蓝色脉冲。这是通过在770 nm处的倍频激光辐射与高度非线性光纤内部产生的可调近红外分量之间的β-硼酸钡中进行总频混合实现的。非线性晶体的小角度调谐会导致可见光波段在460 nm至500 nm之间连续变化的输出波长。在我们设备的整个调谐范围内收集了超过1.5 mW的平均功率,该功率以98 MHz的重复频率传送了低于300 fs的脉冲。这些值表明输入的近红外辐射以20%的光子效率上转换

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