Akosman Ahmet E, Sander Michelle Y
Opt Express. 2017 Aug 7;25(16):18592-18602. doi: 10.1364/OE.25.018592.
Ultra-high precision dual-comb spectroscopy traditionally requires two mode-locked, fully stabilized lasers with complex feedback electronics. We present a novel mode-locked operation regime in a thulium-holmium co-doped fiber laser, a frequency-halved state with orthogonally polarized interlaced pulses, for dual comb generation from a single source. In a linear fiber laser cavity, an ultrafast pulse train composed of co-generated, equal intensity and orthogonally polarized consecutive pulses at half of the fundamental repetition rate is demonstrated based on vector solitons. Upon optical interference of the orthogonally polarized pulse trains, two stable microwave RF beat combs are formed, effectively down-converting the optical properties into the microwave regime. These co-generated, dual polarization interlaced pulse trains, from one all-fiber laser configuration with common mode suppression, thus provide an attractive compact source for dual-comb spectroscopy, optical metrology and polarization entanglement measurements.
传统上,超高精度双梳光谱需要两台锁模、完全稳定的激光器以及复杂的反馈电子设备。我们展示了一种在掺铥-钬光纤激光器中的新型锁模工作模式,即一种具有正交偏振交错脉冲的倍频状态,用于从单个源产生双梳。在线性光纤激光腔中,基于矢量孤子展示了一种超快脉冲序列,该脉冲序列由以基本重复率的一半共同产生的、强度相等且正交偏振的连续脉冲组成。在正交偏振脉冲序列发生光干涉时,会形成两个稳定的微波射频拍频梳,有效地将光学特性下转换到微波频段。这些共同产生的、双偏振交错脉冲序列来自一种具有共模抑制的全光纤激光配置,因此为双梳光谱、光学计量和偏振纠缠测量提供了一个极具吸引力的紧凑型光源。