Physics Department of Politecnico di Milano and IFN-CNR, Piazza Leonardo da Vinci 32, 20133 Milano, Italy.
Department of Physics and Astronomy, University of Bologna, Viale Berti-Pichat 6/2, I-40126 Bologna, Italy.
J Chem Phys. 2018 Oct 21;149(15):154201. doi: 10.1063/1.5046387.
The transfer of phase coherence from an ultrastable master laser to a distributed feedback diode laser, using an optical comb as a transfer oscillator, is obtained via a new scheme allowing continuous scanning across the whole tuning range of the slave laser together with absolute frequency determination. This is accomplished without phase lock loops, through a robust high-bandwidth feed-forward control acting directly on the slave laser output radiation. The correction is obtained by means of a dual-parallel Mach-Zehnder interferometer used as an optical single-sideband modulator. Coherence transfer across a master-slave frequency gap of 14 THz yields an ∼10 kHz linewidth providing high injection efficiency of an optical cavity with finesse 250 000. This allows demonstrating a cavity ring-down absorption spectrum of low-pressure ambient air over a 300 GHz spectral window.
通过一种新方案,利用光梳作为传递振荡器,从超稳定主激光器向分布式反馈二极管激光器传递相位相干,同时实现连续扫描整个从激光器的调谐范围和绝对频率确定。该方案无需锁相环,而是通过直接作用于从激光器输出辐射的鲁棒高带宽前馈控制来实现。通过用作光单边带调制器的双平行马赫-曾德尔干涉仪来获得校正。在主从频率差为 14 THz 的情况下进行相干传递,可获得约 10 kHz 的线宽,从而为 finesse 为 250 000 的光学腔提供高注入效率。这使得能够在 300 GHz 的光谱窗口内演示低压环境空气的腔衰荡吸收光谱。