论文标题
连贯平均的双弯曲光谱和低功率和高功率的Gigahertz双重bamb Laser
Coherently averaged dual-comb spectroscopy with a low-noise and high-power free-running gigahertz dual-comb laser
论文作者
论文摘要
我们提出了一种新型的双重光学频率梳源,能够将应用程序缩放到高测量速度,同时结合高平均功率,超低噪声操作和紧凑的设置。我们的方法基于一个二极管泵式激光腔,其中包括以Brewster角度进行的腔内两种腔,以生成具有高度相关性能的两个空间分离模式。 15厘米长的腔使用YB:Calgo晶体和SESAM作为末端镜,每次梳子平均功率超过3 W,低于80 fs脉冲持续时间,重复速率为1.03 GHz,连续可调的重复率差异最高为27 kHz。我们通过一系列杂作测量值仔细研究了双重炸弹的相干性能,揭示了几个重要特征:(1)在计时噪声的不相关部分上的超低抖动; (2)干涉图的射频梳子线在自由运行中完全解决; (3)我们通过简单地测量干涉图来验证我们可以确定所有射频梳子线相位的波动; (4)该相信息用于后处理程序中,以在长时间标准上执行对乙炔(C2H2)的双重弯曲光谱。我们的结果是通过直接从高度紧凑的激光振荡器组合使用低噪声和高功率操作来实现双重炸弹应用的强大而通用的方法。
We present a new type of dual optical frequency comb source capable of scaling applications to high measurement speeds while combining high average power, ultra-low noise operation, and a compact setup. Our approach is based on a diode-pumped solid-state laser cavity which includes an intracavity biprism operated at Brewster angle to generate two spatially-separated modes with highly correlated properties. The 15-cm-long cavity uses an Yb:CALGO crystal and a SESAM as an end mirror to generate more than 3 W average power per comb, below 80 fs pulse duration, a repetition rate of 1.03 GHz, and a continuously tunable repetition rate difference up to 27 kHz. We carefully investigate the coherence properties of the dual-comb by a series of heterodyne measurements, revealing several important features: (1) ultra-low jitter on the uncorrelated part of the timing noise; (2) the radio frequency comb lines of the interferograms are fully resolved in free-running operation; (3) we validate that through a simple measurement of the interferograms we can determine the fluctuations of the phase of all the radio frequency comb lines; (4) this phase information is used in a post-processing routine to perform coherently averaged dual-comb spectroscopy of acetylene (C2H2) over long timescales. Our results represent a powerful and general approach to dual-comb applications by combining low noise and high power operation directly from a highly compact laser oscillator.