Nishizawa Norihiko, Andou Yoshimichi, Omoda Emiko, Kataura Hiromichi, Sakakibara Youichi
Opt Express. 2016 Oct 3;24(20):23403-23418. doi: 10.1364/OE.24.023403.
We investigated the characteristics and behavior of spectral compression in a quasi-dispersion-increasing comb-profile fiber (CPF). A periodical breathing behavior and sidelobe emission process in the CPF were observed in numerical analysis. Then, taking account of the numerical results, we developed an improved CPF in which the sidelobe suppression was dramatically improved to -24.2 dB while keeping a narrow spectral width of ~0.6 nm. As a seed pulse source, we developed a high-repetition-rate Er-doped ultrashort-pulse fiber laser with single-wall carbon nanotubes and used the improved CPF to realize a high-power, narrow-linewidth source with wide wavelength tunability in the 1.62-1.90 μm band.
我们研究了准色散增加梳状谱光纤(CPF)中光谱压缩的特性和行为。在数值分析中观察到了CPF中的周期性呼吸行为和旁瓣发射过程。然后,考虑到数值结果,我们开发了一种改进的CPF,其中旁瓣抑制显著提高到-24.2 dB,同时保持约0.6 nm的窄光谱宽度。作为种子脉冲源,我们开发了一种带有单壁碳纳米管的高重复率掺铒超短脉冲光纤激光器,并使用改进的CPF在1.62-1.90μm波段实现了具有宽波长可调性的高功率、窄线宽光源。