论文标题
灵活的全PM NALM YB:用于频率梳子应用的纤维激光设计:操作制度及其噪声属性
Flexible all-PM NALM Yb:fiber laser design for frequency comb applications: operation regimes and their noise properties
论文作者
论文摘要
我们提出了一个基于非线性放大环形镜(NALM)的柔性全偏振(PM)模式锁定的Ytterbium(YB):纤维激光器。除了提供详细的设计注意事项外,我们还讨论了这种多功能激光体系结构可访问的不同操作制度,并实验分析了五个代表性模式锁定状态。这五个状态是在不同的腔内组延迟分散(GDD)值以从异常(-0.035 ps $^2 $)到正常(+0.015 ps $^2 $)的78 MHz配置获得的。我们特别关注强度噪声的表征以及载体 - 固定式偏移量(CEO)频率的自由行线宽,这是不同操作机制的函数。我们观察到远离YB(〜1030 nm)的自发发射峰的操作点,可以找到接近零的腔内分散体,而在强烈抑制泵噪声的影响。对于这样的操作点,我们表明,在没有任何主动稳定的情况下,可以在1 s集成下的CEO线宽小于10-kHz。
We present a flexible all-polarization-maintaining (PM) mode-locked ytterbium (Yb):fiber laser based on a nonlinear amplifying loop mirror (NALM). In addition to providing detailed design considerations, we discuss the different operation regimes accessible by this versatile laser architecture and experimentally analyze five representative mode-locking states. These five states were obtained in a 78-MHz configuration at different intracavity group delay dispersion (GDD) values ranging from anomalous (-0.035 ps$^2$) to normal (+0.015 ps$^2$). We put a particular focus on the characterization of the intensity noise as well as the free-running linewidth of the carrier-envelope-offset (CEO) frequency as a function of the different operation regimes. We observe that operation points far from the spontaneous emission peak of Yb (~1030 nm) and close to zero intracavity dispersion can be found, where the influence of pump noise is strongly suppressed. For such an operation point, we show that a CEO linewidth of less than 10-kHz at 1 s integration can be obtained without any active stabilization.