Gotti Riccardo, Puppe Thomas, Mayzlin Yuriy, Robinson-Tait Julian, Wójtewicz Szymon, Gatti Davide, Alsaif Bidoor, Lamperti Marco, Laporta Paolo, Rohde Felix, Wilk Rafal, Leisching Patrick, Kaenders Wilhelm G, Marangoni Marco
Dipartimento di Fisica - Politecnico di Milano and IFN-CNR, Via Gaetano Previati 1/C, 23900, Lecco, Italy.
TOPTICA Photonics AG, Lochhamer Schlag 19, 82166, Gräfelfing, Germany.
Sci Rep. 2020 Feb 13;10(1):2523. doi: 10.1038/s41598-020-59398-1.
Frequency combs have made optical metrology accessible to hundreds of laboratories worldwide and they have set new benchmarks in multi-species trace gas sensing for environmental, industrial and medical applications. However, current comb spectrometers privilege either frequency precision and sensitivity through interposition of a cw probe laser with limited tuning range, or spectral coverage and measurement time using the comb itself as an ultra-broadband probe. We overcome this restriction by introducing a comb-locked frequency-swept optical synthesizer that allows a continuous-wave laser to be swept in seconds over spectral ranges of several terahertz while remaining phase locked to an underlying frequency comb. This offers a unique degree of versatility, as the synthesizer can be either repeatedly scanned over a single absorption line to achieve ultimate precision and sensitivity, or swept in seconds over an entire rovibrational band to capture multiple species. The spectrometer enables us to determine line center frequencies with an absolute uncertainty of 30 kHz and at the same time to collect absorption spectra over more than 3 THz with state-of-the-art sensitivity of a few 10 cm. Beyond precision broadband spectroscopy, the proposed synthesizer is an extremely promising tool to force a breakthrough in terahertz metrology and coherent laser ranging.
频率梳已使全球数百个实验室能够开展光学计量,并且在用于环境、工业和医疗应用的多物种痕量气体传感方面树立了新的标杆。然而,当前的梳状光谱仪要么通过插入调谐范围有限的连续波探测激光来保证频率精度和灵敏度,要么利用频率梳本身作为超宽带探测器来实现光谱覆盖范围和测量时间。我们通过引入一种锁频扫频光学合成器克服了这一限制,该合成器能让连续波激光在数秒内扫描几个太赫兹的光谱范围,同时保持与基础频率梳的锁相。这提供了独特的通用性,因为合成器既可以在单个吸收线上反复扫描以实现极高的精度和灵敏度,也可以在数秒内扫描整个转动 - 振动带以捕获多种物质。该光谱仪使我们能够确定线中心频率,其绝对不确定度为30 kHz,同时以几10 cm的先进灵敏度收集超过3 THz的吸收光谱。除了精密宽带光谱学之外,所提出的合成器还是推动太赫兹计量和相干激光测距取得突破的极具前景的工具。