Wang Zhechao, Van Gasse Kasper, Moskalenko Valentina, Latkowski Sylwester, Bente Erwin, Kuyken Bart, Roelkens Gunther
Department of Information Technology (INTEC), Photonics Research Group, Ghent University-IMEC, Gent 9052, Belgium.
Center for Nano- and Biophotonics, Ghent University, Gent 9052, Belgium.
Light Sci Appl. 2017 May 19;6(5):e16260. doi: 10.1038/lsa.2016.260. eCollection 2017 May.
Optical frequency combs emerge as a promising technology that enables highly sensitive, near-real-time spectroscopy with a high resolution. The currently available comb generators are mostly based on bulky and high-cost femtosecond lasers for dense comb generation (line spacing in the range of 100 MHz to 1 GHz). However, their integrated and low-cost counterparts, which are integrated semiconductor mode-locked lasers, are limited by their large comb spacing, small number of lines and broad optical linewidth. In this study, we report a demonstration of a III-V-on-Si comb laser that can function as a compact, low-cost frequency comb generator after frequency stabilization. The use of low-loss passive silicon waveguides enables the integration of a long laser cavity, which enables the laser to be locked in the passive mode at a record-low 1 GHz repetition rate. The 12-nm 10-dB output optical spectrum and the notably small optical mode spacing results in a dense optical comb that consists of over 1400 equally spaced optical lines. The sub-kHz 10-dB radio frequency linewidth and the narrow longitudinal mode linewidth (<400 kHz) indicate notably stable mode-locking. Such integrated dense comb lasers are very promising, for example, for high-resolution and real-time spectroscopy applications.
光学频率梳作为一种很有前景的技术出现了,它能够实现高灵敏度、近实时的高分辨率光谱学。目前可用的梳状发生器大多基于体积庞大且成本高昂的飞秒激光器来产生密集梳状信号(线间距在100兆赫兹至1吉赫兹范围内)。然而,它们的集成且低成本的同类产品,即集成半导体锁模激光器,受到梳状间距大、线数少和光学线宽大的限制。在本研究中,我们展示了一种硅基III-V族梳状激光器,在频率稳定后可作为紧凑、低成本的频率梳发生器。使用低损耗无源硅波导能够集成长激光腔,这使得激光器能够以创纪录的低1吉赫兹重复频率锁定在被动模式。12纳米的10分贝输出光谱以及显著小的光学模式间距产生了一个密集的光学频率梳,它由超过1400条等间距的光线组成。低于千赫兹的10分贝射频线宽和狭窄的纵向模式线宽(<400千赫兹)表明锁模非常稳定。这种集成密集梳状激光器在例如高分辨率和实时光谱学应用方面非常有前景。