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使用宽调谐自由运转光学参量振荡器实现的跨红外波段的高灵敏度双梳和交叉梳状光谱技术。

High-sensitivity dual-comb and cross-comb spectroscopy across the infrared using a widely tunable and free-running optical parametric oscillator.

作者信息

Bauer Carolin P, Bejm Zofia A, Bollier Michelle K, Pupeikis Justinas, Willenberg Benjamin, Keller Ursula, Phillips Christopher R

机构信息

Department of Physics, Institute for Quantum Electronics, ETH Zurich, Zurich, Switzerland.

出版信息

Nat Commun. 2024 Aug 22;15(1):7211. doi: 10.1038/s41467-024-51392-9.

Abstract

Dual-comb spectroscopy (DCS) enables high-resolution measurements at high speeds without the trade-off between resolution and update rate inherent to mechanical delay scanning. However, high complexity and limited sensitivity remain significant challenges for DCS systems. We address these via a wavelength-tunable dual-comb optical parametric oscillator (OPO) combined with an up-conversion detection method. The OPO is tunable from 1300-1670 nm (signal) and 2700-5000 nm (idler). Spatial multiplexing in both the laser and OPO cavities creates a near-common path arrangement, enabling comb-line-resolved measurements in free-running operation. The narrow instantaneous bandwidth results in high power per comb-line up to 160 μW in the mid-infrared. Through intra-cavity up-conversion based on cross-comb spectroscopy, we leverage these power levels while overcoming the sensitivity limitations of direct mid-infrared detection. This approach yields a high signal-to-noise ratio (50.2 dB Hz) and high dual-comb figure of merit (3.5 × 10 Hz). This scheme enabled detecting ambient methane over a 3-meter path length in millisecond time scale.

摘要

双梳状光谱技术(DCS)能够在高速下进行高分辨率测量,而无需在分辨率和机械延迟扫描固有的更新速率之间进行权衡。然而,高复杂性和有限的灵敏度仍然是DCS系统面临的重大挑战。我们通过将波长可调谐双梳光学参量振荡器(OPO)与上转换检测方法相结合来解决这些问题。该OPO的调谐范围为1300 - 1670纳米(信号)和2700 - 5000纳米(闲频光)。激光腔和OPO腔中的空间复用形成了一种近共光路配置,使得在自由运行模式下能够进行梳状线分辨测量。窄的瞬时带宽导致在中红外波段每条梳状线的功率高达160微瓦。通过基于交叉梳状光谱的腔内上转换,我们在利用这些功率水平的同时克服了直接中红外检测的灵敏度限制。这种方法产生了高信噪比(50.2分贝赫兹)和高双梳品质因数(3.5×10赫兹)。该方案能够在毫秒时间尺度上检测3米路径长度内的环境甲烷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05f9/11341905/980dfe06e938/41467_2024_51392_Fig1_HTML.jpg

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