Wu Yulan, Zhuzou Mingyang, Zhao Tongxun, Ding Pengji, Sun Shaohua, Wang Jijin, Liu Zuoye, Hu Bitao
Opt Lett. 2022 Apr 1;47(7):1859-1862. doi: 10.1364/OL.454045.
Gas-phase pressure measurements remain challenging in situations where local pressure rapidly changes or in hostile environments such as turbulent combustion. In this work, we demonstrate the implementation of the recently developed femtosecond laser-induced grating scattering (fs-LIGS) technique for pressure measurement in ambient air. With an overall femtosecond laser pulse energy of 185 μJ, fs-LIGS signals were generated for various gas pressure ranging from 0.2 to 3.0 bar. By theoretically fitting the signal and extracting the time constant of the stationary density modulation damping, the pressure is successfully derived. The derived values were compared to the gauge pressure, which shows a quasi-linear dependence with a slope of 0.96, suggesting the feasibility of the fs-LIGS technique for gas-phase pressure measurements.
在局部压力快速变化的情况下,或者在湍流燃烧等恶劣环境中,气相压力测量仍然具有挑战性。在这项工作中,我们展示了最近开发的飞秒激光诱导光栅散射(fs-LIGS)技术在环境空气中进行压力测量的应用。在飞秒激光脉冲总能量为185 μJ的情况下,针对0.2至3.0巴的各种气体压力生成了fs-LIGS信号。通过对信号进行理论拟合并提取静态密度调制阻尼的时间常数,成功得出了压力值。将得出的值与表压进行比较,结果显示出斜率为0.96的准线性依赖关系,这表明fs-LIGS技术用于气相压力测量的可行性。