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Measurement of laser induced fluorescence for argon plasma flow with oxygen injection

AIP ADVANCES(2023)

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Abstract
The experimental investigation of the effects of O-2 injection on the magnetized Ar plasma flow in the linear plasma device was conducted by using the measurement of laser induced fluorescence (LIF) with electric probes. The LIF measurement was based on the Ar ion transition from the 3d(4)F(7/2) metastable level to the 4p(4)D(5/2) level at a wavelength of 668.61 nm. In addition, the analysis of ion velocity distribution functions (IVDFs) involved the detection of fluorescence light emitted from the 4p(4)D(5/2) level to the 4s(4)P(3/2) level, which had a wavelength of 442.72 nm. For a comprehensive analysis of the intricate interaction between O-2 injection and the behavior of the Ar plasma flow, the oxygen was injected into the Ar plasma, and the O-2/Ar ratio ranged from 0% to 14% while maintaining a constant pressure of 2 mTorr. The Zeeman splitting in the IVDFs was clearly observable for pure Ar plasma due to 800 G as the high magnetic field strength. The split form disappeared due to a small amount of oxygen injected as the O-2/Ar ratio of 3.5%. The LIF intensity is in agreement with the tendency of plasma density due to the reduction of Ar ions by charge transfer, quenching, and neutralization as O-2 is injected into the Ar plasma. The experimental results show that the effects on temperature and flow velocity for the Ar ions are insignificant when O-2 is injected into the Ar plasma at the O-2/Ar ratio of 0%-14%, in contrast to the large change in the electron temperature. (c) 2023 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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Key words
argon plasma flow,oxygen injection,fluorescence,laser
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