DOE OSTI · 3003046
Polarization-separated double-imaging spectroscopy for weakly-ionized plasma diagnostics
Abstract
Laser Thomson scattering, which provides thermal properties of electrons, has been extensively utilized in plasma diagnostics. However, being a non-resonant linear light scattering technique, it often encounters several challenges in weakly-ionized plasma diagnostics due to spectral overlap with different scatterings induced from other existing species, including Mie, Rayleigh, and rotational Raman scatterings. To address this challenge, we propose an imaging spectroscopy technique, polarization-separated double-imaging spectroscopy (PoDIS), which selectively separates specific scatterings based on their polarization characteristics. Using an atmospheric plasma jet as a plasma source for demonstration, we show that PoDIS can effectively separate rotational Raman and Thomson scatterings from a superimposed spectrum without prior knowledge or assumptions about the thermal properties of neutrals or electrons. This separation enables independent fitting of the rotational Raman and Thomson scattering spectra, allowing for precise determination of the thermal properties of neutral particles and electrons separately.
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Bak, Junhwi [Texas A&M University, College Station, TX (United States)] (ORCID:0000000233148373), Koiso, Takuya [The University of Tokyo (Japan)], Miles, Richard [Texas A&M University, College Station, TX (United States)]. 2025-05-23. Polarization-separated double-imaging spectroscopy for weakly-ionized plasma diagnostics. https://doi.org/10.1364/oe.561668
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