LENS, European Laboratory for NonLinear Spectroscopy, Via N. Carrara 1, Sesto Fiorentino (FI) I-50019, Italy.
Nat Commun. 2012;3:1040. doi: 10.1038/ncomms2048.
Optical frequency comb synthesizers have represented a revolutionary approach to frequency metrology, providing a grid of frequency references for any laser emitting within their spectral coverage. Extending the metrological features of optical frequency comb synthesizers to the terahertz domain would be a major breakthrough, due to the widespread range of accessible strategic applications and the availability of stable, high-power and widely tunable sources such as quantum cascade lasers. Here we demonstrate phase-locking of a 2.5 THz quantum cascade laser to a free-space comb, generated in a LiNbO(3) waveguide and covering the 0.1-6 THz frequency range. We show that even a small fraction (<100 nW) of the radiation emitted from the quantum cascade laser is sufficient to generate a beat note suitable for phase-locking to the comb, paving the way to novel metrological-grade terahertz applications, including high-resolution spectroscopy, manipulation of cold molecules, astronomy and telecommunications.
光学频率梳合成器代表了频率计量学的一种革命性方法,为其光谱覆盖范围内发射的任何激光提供了频率参考网格。将光学频率梳合成器的计量特性扩展到太赫兹域将是一个重大突破,因为太赫兹域可应用于广泛的战略应用,并且存在稳定、高功率和广泛可调谐的源,如量子级联激光器。在这里,我们演示了将 2.5 THz 量子级联激光器锁定到自由空间梳状结构,该梳状结构在 LiNbO(3)波导中产生,覆盖 0.1-6 THz 的频率范围。我们表明,即使是从量子级联激光器中发射的一小部分(<100 nW)辐射也足以产生适合与梳状结构进行锁定的拍频信号,为新型计量级太赫兹应用铺平了道路,包括高分辨率光谱学、冷分子操纵、天文学和电信。