Long David A, Reschovsky Benjamin J
National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.
OSA Contin. 2019;2(12). doi: https://doi.org/10.1364/osac.2.003576.
Direct digital synthesis in concert with an electro-optic phase modulator was employed to generate optical frequency combs with tooth spacings as low as 100 Hz. These combs were utilized to probe electromagnetically induced transparency (EIT) and hyperfine pumping in potassium vapor cells. Long-term coherent averaging was demonstrated with performance similar to that achieved with a vastly more expensive arbitrary waveform generator. From the potassium EIT transition we were able to determine the ground state hyperfine splitting with a fit uncertainty of 80 Hz. Importantly, because of the mutual coherence between the control and probe beams, which originate from a single laser, features with linewidths several orders-of-magnitude narrower than the laser linewidth could be observed in a multiplexed fashion. This approach removes the need for slow scanning of a traditional cw laser or mode-locked-laser-based optical frequency comb.
直接数字合成与电光相位调制器协同工作,用于产生齿间距低至100 Hz的光学频率梳。这些频率梳被用于探测钾蒸汽室中的电磁诱导透明(EIT)和超精细泵浦。展示了长期相干平均,其性能与使用昂贵得多的任意波形发生器所实现的性能相似。从钾的EIT跃迁中,我们能够以80 Hz的拟合不确定度确定基态超精细分裂。重要的是,由于源自单个激光器的控制光束和探测光束之间的相互相干性,可以以复用方式观察到线宽比激光线宽窄几个数量级的特征。这种方法无需对传统连续波激光器或基于锁模激光器的光学频率梳进行慢速扫描。