The aim of this paper is to explore the possibility of simultaneously characterizing instabilities in vacuum arc thrusters on a broadband frequency range (kHz–GHz) in situ, meaning in a conventionally used vacuum chamber where vacuum arc thrusters are usually operated. We show in this paper that, despite the reverberant nature of the vacuum metallic chamber, useful information is extracted over a large frequency range from the measurements done with an antenna in this environment. This leads to the first characterization of the self-emission of a vacuum arc thruster in the GHz frequency range.
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