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首页> 外文期刊>Applied optics >Laser-induced fluorescence measurements of translational temperature and relative cycle number by use of optically pumped trace-sodium vapor
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Laser-induced fluorescence measurements of translational temperature and relative cycle number by use of optically pumped trace-sodium vapor

机译:激光诱导的平移温度和相对循环数的荧光测量,采用光学泵浦的痕量钠蒸气

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摘要

Sodium fluorescence induced by a narrow-bandwidth tunable laser has been used to measure temperature, pressure, axial velocity, and species concentrations in wind tunnels, rocket engine exhausts, and the upper atmosphere. Optical pumping of the ground states of the sodium, however, can radically alter the shape of the laser-induced fluorescence excitation spectrum, complicating such measurements. Here a straightforward extension of rate equations originally proposed to account for the features of the pumped spectrum is used to make temperature measurements from spectra taken in pumped vapor. Also determined from the spectrum is the relative fluorescence cycle number, which has application to measurement of diffusion rate and transverse flow velocity. The accuracy of both the temperature and the cycle-number measurements is comparable with that of temperature measurements made in the absence of pumping.
机译:由窄带宽可调激光器感应的钠荧光已被用于测量温度,压力,轴向速度以及风洞,火箭发动机废气和高层大气中的物质浓度。但是,钠基态的光泵浦会从根本上改变激光诱导的荧光激发光谱的形状,从而使这种测量变得复杂。在这里,最初提出来解释抽运光谱特征的速率方程式的直接扩展用于根据抽运蒸气中获得的光谱进行温度测量。从光谱还可以确定相对荧光循环数,其可用于测量扩散速率和横向流速。温度和循环次数测量的精度都与没有泵送时的温度测量精度相当。

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