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Velocity and Electronic State Distributions of Sputtered Fe Atoms by Laser-Induced Fluorescence Spectroscopy

机译:激光诱导荧光光谱法研究溅射Fe原子的速度和电子态分布

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Velocity distributions and relative populations in the fine-structure levels of the a exp 5 D/sub J/ ground state of Fe atoms, produced by sputtering with 3 keV argon ions, have been investigated by Doppler shifted laser induced fluorescence. The laser system employs a single-mode, scanning ring dye laser, amplified by a sequence of three excimer-pumped flowing-dye cells. Frequency doubling in a KD*P crystal was used to produce high energy (> .5 mJ) pulses of narrowband tunable UV output near 300 nm. Laser power influence on effective velocity bandwidth was investigated. Favorable light-collection geometry minimized distortion of the velocity spectra from apparatus-averaging effects. In impurity flux diagnostic applications in fusion devices, substantial spatial averaging may occur. In the latter case, the narrow velocity bandwidth (70 m/s, transform limit) of the present laser system is particularly useful. (ERA citation 09:006985)

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