Domingue S R, Bartels R A
Opt Lett. 2015 Jan 15;40(2):253-6. doi: 10.1364/OL.40.000253.
Using a low-nonlinearity fiber and pulses from a nonlinear fiber amplifier seeded by a modelocked Yb-doped fiber oscillator, we generate 19-fs pulses centered at 1065 nm with 11.5 nJ of pulse energy (700 mW average power). The short (<15 cm) 10-μm core, polarization maintaining fiber minimizes deleterious nonlinear effects and eliminates fiber damage, while still producing pulse bandwidths well beyond the Yb gain bandwidth limit. A flat-field pulse shaper, utilizing a Plössl lens, compresses the pulse to within 92% of the transform-limited peak power. The total power transmission efficiency is as high as 67%, including fiber coupling losses and pulse shaper transmission, due to the novel pulse shaper design allowing the incorporation of a high-efficiency transmission grating.
我们使用低非线性光纤以及由锁模掺镱光纤振荡器种子注入的非线性光纤放大器产生的脉冲,产生了中心波长为1065 nm、脉宽为19 fs、脉冲能量为11.5 nJ(平均功率700 mW)的脉冲。这种短(<15 cm)的10-μm芯保偏光纤可将有害非线性效应降至最低并消除光纤损伤,同时仍能产生远超出掺镱增益带宽限制的脉冲带宽。利用普洛舍尔透镜的平场脉冲整形器将脉冲压缩至变换极限峰值功率的92%以内。由于采用了新颖的脉冲整形器设计,可集成高效透射光栅,包括光纤耦合损耗和脉冲整形器传输在内的总功率传输效率高达67%。