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Phase-locking and Pulse Generation in Multi-Frequency Brillouin Oscillator via Four Wave Mixing

机译:四波混频在多频布里渊振荡器中的锁相和脉冲产生

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摘要

There is an increasing demand for pulsed all-fibre lasers with gigahertz repetition rates for applications in telecommunications and metrology. The repetition rate of conventional passively mode-locked fibre lasers is fundamentally linked to the laser cavity length and is therefore typically ~10–100 MHz, which is orders of magnitude lower than required. Cascading stimulated Brillouin scattering (SBS) in nonlinear resonators, however, enables the formation of Brillouin frequency combs (BFCs) with GHz line spacing, which is determined by the acoustic properties of the medium and is independent of the resonator length. Phase-locking of such combs therefore holds a promise to achieve gigahertz repetition rate lasers. The interplay of SBS and Kerr-nonlinear four-wave mixing (FWM) in nonlinear resonators has been previously investigated, yet the phase relationship of the waves has not been considered. Here, we present for the first time experimental and numerical results that demonstrate phase-locking of BFCs generated in a nonlinear waveguide cavity. Using real-time measurements we demonstrate stable 40 ps pulse trains with 8 GHz repetition rate based on a chalcogenide fibre cavity, without the aid of any additional phase-locking element. Detailed numerical modelling, which is in agreement with the experimental results, highlight the essential role of FWM in phase-locking of the BFC.
机译:对于电信和计量应用,对具有千兆赫重复频率的脉冲全光纤激光器的需求不断增长。常规的被动锁模光纤激光器的重复率从根本上与激光腔的长度有关,因此通常为10-100MHz,比要求的低几个数量级。但是,在非线性谐振器中级联受激布里渊散射(SBS)可以形成具有GHz线间距的布里渊频率梳(BFC),这由介质的声学特性决定,并且与谐振器的长度无关。因此,这种梳子的锁相有望实现千兆赫的重复频率激光器。先前已经研究了非线性谐振器中SBS与Kerr非线性四波混频(FWM)的相互作用,但尚未考虑波的相位关系。在这里,我们首次展示了实验和数值结果,它们证明了在非线性波导腔中产生的BFC的锁相。通过实时测量,我们证明了基于硫族化物纤维腔的稳定重复频率为8 GHz的40 ps脉冲序列,无需任何其他锁相元件。与实验结果一致的详细数值建模突出了FWM在BFC锁相中的重要作用。

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