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Measurements of OH Radicals in a Low-Power Atmospheric Inductively Coupled Plasma by Cavity Ringdown Spectroscopy

机译:用腔衰荡光谱法测量低功率大气电感耦合等离子体中的OH自由基

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Cavity ringdown spectroscopy is applied to line-of-sight measurements of OH radicals in an atmospheric-pressure argon inductively coupled plasma, operating at low power (200 W) and low gas flows (~18 liters/min). Density populations of the single S_(21)(1) rotational line in the OH A~(2)Σ~(+)-X~(2)II (0-0) band are extracted from the measured line-of-sight absorbance. Plasma gas kinetic temperatures, derived from the recorded line shapes of the S_(21)(1) line, ranged from 1858 to 2000 K with an average uncertainty of 10%. Assuming local thermodynamic equilibrium, an assumption supported by the comparison of the experimental and simulated spectra, the spatially averaged total OH number density at different observation heights was determined to be in the range of 1.7×10~(20)-8.5×10~(20) (m~(-3)) with the highest OH density in the plasma tail. This work demonstrates that ringdown spectra of the OH radical may be used both as a thermometer for high-temperature environments and as a diagnostic tool to probe the thermodynamic properties of plasmas.
机译:腔衰荡光谱法用于在大气压氩感应耦合等离子体中以低功率(200 W)和低气流(〜18升/分钟)操作的OH自由基的视线测量。从测量的视线中提取OH A〜(2)Σ〜(+)-X〜(2)II(0-0)波段中单个S_(21)(1)旋转线的密度种群吸光度。由S_(21)(1)线的记录线形得出的等离子气体动力学温度范围为1858至2000 K,平均不确定度为10%。假设局部热力学平衡,通过对实验光谱和模拟光谱进行比较的假设,确定在不同观察高度处的空间平均总OH数密度在1.7×10〜(20)-8.5×10〜( 20)(m〜(-3))在血浆尾巴中具有最高的OH密度。这项工作表明,OH自由基的衰荡光谱既可以用作高温环境的温度计,又可以用作检测等离子体的热力学性质的诊断工具。

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