首页> 外文OA文献 >Application of two-photon absorption laser induced fluorescence to validate actinometry measurements of absolute atomic oxygen number density based on improved EEDFs obtained from PIC simulations.
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Application of two-photon absorption laser induced fluorescence to validate actinometry measurements of absolute atomic oxygen number density based on improved EEDFs obtained from PIC simulations.

机译:应用双光子吸收激光诱导荧光来验证基于从pIC模拟获得的改进的EEDF的绝对原子氧数密度的光能测量。

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摘要

Actinometry is a non-invasive optical technique that allows absolute atomic oxygen density determination within a plasma provided certain conditions are met. However, the technique is sensitive to to the accuracy of the Electron Energy Distribution Function (EEDF). A Maxwellian distribution is often used for actinometry calculations, but this is typically just an approximation. A Particle in Cell (PIC) code is used to try and generate a more accurate EEDF to improve the actinometry results. To do this the electron density in the plasma is measured using a hairpin probe and compared to the electron density predicted by the PIC code. The code is adjusted to get a reasonable agreement with the hairpin probe electron densities. The corresponding EEDF from the PIC code is then used in the actinoometry model to calculate the atomic oxygen density in the plasma. The actinometry results are compared to oxygen density measurements made using Two-photon Absorption Laser Induced Fluorescence to validate the actinometry results.
机译:光化学计量学是一种非侵入式光学技术,只要满足某些条件,就可以确定等离子体内的绝对原子氧密度。但是,该技术对电子能量分布函数(EEDF)的精度很敏感。麦克斯韦分布通常用于光度法计算,但这通常只是一个近似值。单元中的粒子(PIC)代码用于尝试生成更准确的EEDF,以改善光度测定结果。为此,使用发夹式探针测量血浆中的电子密度,并将其与PIC代码预测的电子密度进行比较。调整代码以与发夹式探针的电子密度达成合理的一致。然后,将来自PIC代码的相应EEDF用于光度计模型中,以计算等离子体中的原子氧密度。将该光化测定结果与使用双光子吸收激光诱导的荧光进行的氧密度测量结果进行比较,以验证该光化测定结果。

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