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Simulations and experiments showing the origin of multi-wavelength mode locking in femtosecond, Yb-fiber lasers

机译:模拟和实验显示了飞秒Yb光纤激光器中多波长模式锁定的起源

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摘要

A stable and self-starting femtosecond breathing-pulse Yb-fiber oscillator is reported, modelocked using the nonlinear polarisation evolution mechanism. A bifurcation between two distinct modes of operation is demonstrated experimentally, producing pulses with a single central wavelength in one state, or following adjustment of the intra-cavity waveplates, the emission of pulses with three distinct central wavelengths. The maximum bandwidth was 72 nm at the -10 dB level and the pulses were compressible externally to 70 fs with energies of 0.75 nJ. The multi-wavelength pulses reported here are significantly shorter than the pico-second pulses previously observed from similar modelocked multi-wavelength sources. Vector simulations based on the nonlinear Schrödinger equation show that the multi-wavelength behaviour is produced by overdriving the nonlinear polarisation evolution based saturable absorber at the peak of the pulse, leading to transmission of the two wings of the strongly chirped pulse. This new insight shows clearly that the three pulses output in the multi-wavelength state are coherent. The agreement between simulation and experimental data shows nonlinear polarisation evolution based modelocked fiber lasers are a suitable platform for studying the nonlinear dynamics underlying the bifurcation of the output.
机译:据报道,使用非线性极化演化机制将一个稳定且自启动的飞秒呼吸脉冲Yb光纤振荡器锁定。实验证明了两种不同工作模式之间的分叉,即在一个状态下产生具有单个中心波长的脉冲,或者在调整腔内波片之后,发出具有三个不同中心波长的脉冲。在-10 dB的水平下,最大带宽为72 nm,脉冲在外部可​​压缩至70 fs,能量为0.75 nJ。这里报道的多波长脉冲比以前从类似的ockocked多波长源观察到的皮秒脉冲要短得多。基于非线性Schrödinger方程的矢量仿真表明,通过在脉冲的峰值处过分驱动基于非线性极化演化的可饱和吸收体来产生多波长行为,从而导致强pulse脉冲的两个翼传输。这一新见解清楚地表明,在多波长状态下输出的三个脉冲是相干的。仿真和实验数据之间的一致性表明,基于非线性偏振演化的锁模光纤激光器是研究输出分叉背后的非线性动力学的合适平台。

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