Measurements of low-energy electron reflection at a plasma boundary

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Abstract

It is demonstrated that low-energy (<3eV) electron reflection from a solid surface in contact with a low-temperature plasma can have significant variation with time. An uncontaminated, i.e., "clean," metallic surface (just after heating up to glow) in a plasma environment may have practically no reflection of low-energy incident electrons. However, a contaminated, i.e., "dirty," surface (in some time after cleaning by heating) that has a few monolayers of absorbent can reflect low-energy incident electrons and therefore significantly affect the net electron current collected by the surface. This effect may significantly change plasma properties and should be taken into account in plasma experiments and models. A diagnostic method is demonstrated for measurements of low-energy electron absorption coefficient in plasmas with a mono-energetic electron group.

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Demidov, V. I., Adams, S. F., Kaganovich, I. D., Koepke, M. E., & Kurlyandskaya, I. P. (2015). Measurements of low-energy electron reflection at a plasma boundary. Physics of Plasmas, 22(10). https://doi.org/10.1063/1.4933002

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