Wang Shuai, Fan Xinyu, Xu Bingxin, He Zuyuan
Opt Lett. 2017 Oct 1;42(19):3984-3987. doi: 10.1364/OL.42.003984.
An electro-optic frequency comb enables frequency-agile comb-based spectroscopy without using sophisticated phase-locking electronics. Nevertheless, dense electro-optic frequency combs over broad spans have yet to be developed. In this Letter, we propose a straightforward and efficient method for electro-optic frequency comb generation with a small line spacing and a large span. This method is based on two-stage modulation: generating an 18 GHz line-spacing comb at the first stage and a 250 MHz line-spacing comb at the second stage. After generating an electro-optic frequency comb covering 1500 lines, we set up an easily established mutually coherent hybrid dual-comb interferometer, which combines the generated electro-optic frequency comb and a free-running mode-locked laser. As a proof of concept, this hybrid dual-comb interferometer is used to measure the absorption and dispersion profiles of the molecular transition of HCN with a spectral resolution of 250 MHz.
电光频率梳能够实现基于频率捷变梳的光谱学,而无需使用复杂的锁相电子设备。然而,大跨度的密集电光频率梳尚未得到开发。在本信函中,我们提出了一种简单高效的方法来产生具有小线间距和大跨度的电光频率梳。该方法基于两级调制:在第一阶段产生18吉赫兹线间距的梳状信号,在第二阶段产生250兆赫兹线间距的梳状信号。在产生覆盖1500条谱线的电光频率梳之后,我们搭建了一个易于建立的相互相干混合双梳干涉仪,它将产生的电光频率梳与一个自由运转的锁模激光器相结合。作为概念验证,该混合双梳干涉仪用于测量HCN分子跃迁的吸收和色散谱,光谱分辨率为250兆赫兹。