首页> 外文会议>The 41st IEEE International Conference on Plasma Science, and the 20th International Conference on High-Power Particle Beams >Laser induced florescence and continuous wave ring down spectroscopy: Measurements of argon ion velocity distribution functions in a helicon plasma
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Laser induced florescence and continuous wave ring down spectroscopy: Measurements of argon ion velocity distribution functions in a helicon plasma

机译:激光诱导荧光和连续波衰荡光谱:螺旋等离子体中氩离子速度分布函数的测量

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Summary form only given. In this work we compare measurements of argon ion velocity distribution functions (IVDFs) in a helicon plasma using two spectroscopic techniques: laser induced florescence (LIF) and continuous wave cavity ring down spectroscopy (CW-CRDS). LIF is an established and powerful technique, but suffers from the requirement that the initial state of the LIF sequence have a substantial density. This usually limits LIF to ions and atoms with large metastable state densities for the given plasma conditions. CRDS is a proven, ultra-sensitive, cavity enhanced absorption spectroscopy technique and when combined with a CW diode laser that has a sufficiently narrow line width, the Doppler broadened absorption line, i.e., the VDFs, can be measured. CW-CRDS is more sensitive than LIF and can potentially be applied to much lower density populations of ion and atom states. However, being a line integrated technique CW-CRDS lacks the spatial resolution of LIF. We present CW-CRDS and LIF measurements of the IVDFs in an argon plasma using the 668.614 nm (in vacuum) line of Ar II.
机译:仅提供摘要表格。在这项工作中,我们使用两种光谱技术比较了在氦等离子体中氩离子速度分布函数(IVDF)的测量:激光诱导荧光(LIF)和连续波腔衰荡光谱(CW-CRDS)。 LIF是一项既定且强大的技术,但受LIF序列的初始状态具有较大密度的要求所困扰。对于给定的等离子体条件,这通常将LIF限制为具有大的亚稳态态密度的离子和原子。 CRDS是一种行之有效的超灵敏腔增强吸收光谱技术,当与线宽足够窄的CW二极管激光器结合使用时,可以测量多普勒加宽的吸收线,即VDF。 CW-CRDS比LIF更为灵敏,可以潜在地应用于密度低得多的离子和原子态种群。然而,作为一种线集成技术,CW-CRDS缺乏LIF的空间分辨率。我们介绍了使用Ar II的668.614 nm(真空)线在氩气等离子体中IVDF的CW-CRDS和LIF测量。

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