Cheng H, Zhou Y, Mironov A E, Wang W, Qiao T, Lin W, Qian Q, Xu S, Yang Z, Eden J G
Opt Express. 2017 Oct 2;25(20):24400-24409. doi: 10.1364/OE.25.024400.
Multiplication of the pulse repetition frequency (PRF) of a compact, mode-locked fiber laser by a factor as large as 25 has been achieved with two coupled Fabry-Perot (FP) resonators of low finesse (F = 2). Reducing the FP finesse by at least two orders of magnitude, relative to previous pulse frequency multiplication architectures, has the effect of stabilizing the oscillator with respect to pulse-to-pulse amplitude, dropped pulses, and other effects of cavity detuning. Coupling two Fabry-Perot cavities, each encompassing a 3.3-3.6 cm length of fiber, in a hybrid geometry resembling that of the coupled-cavity laser interferometer has yielded side mode suppressions ≥ 50 dB while simultaneously doubling the laser PRF to 2.87 GHz. Pulses approximately 3.9 ps in duration (FWHM) are emitted at intervals of 27.5 ps, and in groups (bursts) of pulses separated by 350 ps. Thus, the PRF within the pulse bursts is 36 GHz, a factor of 25 greater than the free spectral range for a conventional mode-locked cavity having a length of 6.9 cm. Experimental data are in accord with simulations of the phase coherence and temporal behavior of the mode-locked pulses.
利用两个低精细度(F = 2)的耦合法布里 - 珀罗(FP)谐振器,已实现将紧凑型锁模光纤激光器的脉冲重复频率(PRF)提高至25倍。相对于之前的脉冲频率倍增架构,将FP精细度降低至少两个数量级,具有稳定振荡器脉冲间幅度、减少丢失脉冲以及其他腔失谐效应的作用。以类似于耦合腔激光干涉仪的混合几何结构耦合两个法布里 - 珀罗腔,每个腔包含3.3 - 3.6厘米长的光纤,实现了≥50 dB的边模抑制,同时将激光PRF翻倍至2.87 GHz。持续时间约为3.9 ps(半高宽)的脉冲以27.5 ps的间隔发射,并以350 ps的间隔成组(脉冲串)发射。因此,脉冲串内的PRF为36 GHz,比长度为6.9厘米的传统锁模腔的自由光谱范围大25倍。实验数据与锁模脉冲的相位相干和时间行为模拟结果一致。