论文标题
通过光学注射对频率梳子的同步
Synchronization of frequency combs by optical injection
论文作者
论文摘要
基于半导体激光器的光学频率梳子是双弯曲光谱仪整体整合的有前途的技术。但是,由于缺乏八度跨度的光谱,FCEO的稳定率仍然是一个具有挑战性的壮举。在双弯曲配置中,偏移频率的不相关抖动会导致非周期性信号,导致信号噪声比(SNR)有限的宽型人类的beatnotes。因此,目前需要昂贵的数据采集方案和复杂的信号处理。在这里,我们表明,两个频率梳子的偏移频率可以通过光学注入锁定进行同步,这可以在与电气注入结合使用时进行全相稳定。通过光学游标过滤器隔离的单一梳子线是注射锁定的主振荡器。所得的双弯曲信号在数千个时期内是周期性和稳定的。这可以使用模拟电子设备进行连贯的平均值,这将SNR增加并分别降低了一个和三个数量级。提出的方法将通过利用集成的光学滤镜来实现全相稳定的双弯曲光谱仪,并为测量和稳定FCEO提供访问。
Optical frequency combs based on semiconductor lasers are a promising technology for monolithic integration of dual-comb spectrometers. However, the stabilization of the offset frequency fceo remains a challenging feat due the lack of octave-spanning spectra. In a dual-comb configuration, the uncorrelated jitter of the offset frequencies leads to a non-periodic signal resulting in broadened beatnotes with a limited signal-to-noise ratio (SNR). Hence, expensive data acquisition schemes and complex signal processing are currently required. Here, we show that the offset frequencies of two frequency combs can be synchronized by optical injection locking, which allows full phase-stabilization when combined with electrical injection. A single comb line isolated via an optical Vernier filter serves as Master oscillator for injection locking. The resulting dual-comb signal is periodic and stable over thousands of periods. This enables coherent averaging using analog electronics, which increases the SNR and reduces the data size by one and three orders of magnitude, respectively. The presented method will enable fully phase-stabilized dual-comb spectrometers by leveraging on integrated optical filters and provides access for measuring and stabilizing fceo.