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采用游标滤波的直接频率梳腔衰荡光谱技术。

Direct Frequency Comb Cavity Ring-Down Spectroscopy Using Vernier Filtering.

作者信息

Chen Tzu-Ling, Markus Charles R, Ober Douglas C, Sterczewski Lukasz A, Huang Yi-Jan, Lisano Michael T, Canedy Chadwick L, Vurgaftman Igor, Frez Clifford, Meyer Jerry R, Bagheri Mahmood, Okumura Mitchio

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

Department of Photonics, College of Electrical and Computer Engineering, National Yang Ming Chiao Tung University, Hsinchu 300093, Taiwan.

出版信息

J Phys Chem A. 2025 Feb 6;129(5):1452-1458. doi: 10.1021/acs.jpca.4c05188. Epub 2025 Jan 24.

Abstract

We present direct frequency comb cavity ring-down spectroscopy with Vernier filtering as a straightforward approach to sensitive and multiplexed trace gas detection. The high finesse cavity acts both to extend the interaction length with the sample and as a spectral filter, alleviating the need for dispersive elements or an interferometer. In this demonstration, a free running interband cascade laser was used to generate a comb centered at 3.3 μm covering ∼10 cm (300 GHz), which was coupled into a high-finesse cavity, providing 0.9 km of effective path length. The Vernier configuration transmitted the comb modes in sequence, and ring-down decays could be initiated either with an acousto-optic modulator or by scanning the cavity length beyond the adiabatic limit, with trade-offs between duty cycle and sensitivity. This implementation achieved a figure of merit of 4.3 × 10 cm Hz per spectral element, and measurements of toluene demonstrated its ability to observe trace concentrations of a continuum absorber. This method does not require anything beyond a conventional single-mode cavity ring-down instrument other than an optical frequency comb, making it readily accessible to a wide range of applications.

摘要

我们展示了采用游标滤波的直接频率梳腔衰荡光谱技术,这是一种用于灵敏且多路复用痕量气体检测的直接方法。高精细度腔既用于延长与样品的相互作用长度,又用作光谱滤波器,从而无需色散元件或干涉仪。在本演示中,使用一台自由运转的带间级联激光器产生了一个中心位于3.3μm、覆盖约10cm(300GHz)的频率梳,该频率梳被耦合到一个高精细度腔中,提供了0.9km的有效光程长度。游标配置按顺序传输频率梳模式,并且可以使用声光调制器或通过将腔长度扫描到绝热极限之外来启动衰荡衰减,在占空比和灵敏度之间存在权衡。这种实现方式每个光谱元素的品质因数达到了4.3×10cm Hz,并且对甲苯的测量证明了其观测连续吸收体痕量浓度的能力。该方法除了光学频率梳之外,不需要传统单模腔衰荡仪器之外的任何东西,使其易于应用于广泛的领域。

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