Chen Yang, Zhao Weixiong, Fang Bo, Yang Nana, Chen Nuo, Zhang Weijun
Laboratory of Atmospheric Physico-Chemistry, Anhui Institute of Optics and Fine Mechanics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China.
Science Island Branch, Graduate School of USTC, Hefei 230026, China.
Analyst. 2025 Jun 23;150(13):2893-2900. doi: 10.1039/d5an00260e.
The hydroperoxyl radical (HO) is an important oxidant, playing a crucial role in atmospheric chemistry processes such as free radical cycling and ozone formation. However, the direct measurement of HO using laser absorption techniques presents significant challenges due to its low atmospheric concentration, high reactivity, and short lifetime. In this paper, a high-sensitivity narrow-linewidth cavity ring-down spectroscopy (CRDS) system for HO detection was developed. By employing dual locking of the feedback phase and laser current to the resonant cavity, the probe laser linewidth was successfully narrowed from 2.3 MHz to 12.3 kHz, and the frequency noise was reduced by 4 to 5 orders of magnitude. Through cavity length adjustments, a continuous laser frequency tuning range of 4.5 GHz was achieved. This narrow linewidth laser significantly heightened the trigger efficiency of the CRDS system. Allan deviation analysis at a fixed laser frequency demonstrated that an improved sensitivity of 3.24 × 10 cm could be obtained with an averaging time of 0.48 s, which corresponds to an HO detection limit of 1.29 × 10 molecule per cm. The developed system features a simple design and provides a valuable technical reference for future research on direct HO measurements.
氢过氧自由基(HO)是一种重要的氧化剂,在自由基循环和臭氧形成等大气化学过程中起着关键作用。然而,由于其在大气中的浓度低、反应活性高且寿命短,利用激光吸收技术直接测量HO面临重大挑战。本文研制了一种用于检测HO的高灵敏度窄线宽腔衰荡光谱(CRDS)系统。通过将反馈相位和激光电流双锁定到谐振腔,探测激光线宽成功从2.3 MHz窄化至12.3 kHz,频率噪声降低了4至5个数量级。通过调整腔长,实现了4.5 GHz的连续激光频率调谐范围。这种窄线宽激光显著提高了CRDS系统的触发效率。在固定激光频率下的 Allan 偏差分析表明,平均时间为0.48 s时可获得3.24×10 cm的改进灵敏度,这对应于每立方厘米1.29×10个分子的HO检测限。所研制的系统设计简单,为未来直接测量HO的研究提供了有价值的技术参考。