Negative ion production by volumetric processes is investigated in the RAID linear device using experiments and modeling. Measurements by optical emission spectroscopy, cavity ring-down spectroscopy, and Langmuir probe assisted laser photodetachment are combined and reveal that H- and D- ions are distributed in a halo around the plasma column with densities of 2 × 1016 m-3 for only a few kilowatts of RF power in a Cs-free plasma. A hydrogen transport fluid code shows that RAID plasmas have a hot electron core favorable to ro-vibrational excitation and dissociation of H2 molecules. Dissociative attachment to ro-vibrationally excited H2 molecules is the only significant source of H- anywhere in the RAID volume.

Helicon Volume Production of H- and D- Using a Resonant Birdcage Antenna on RAID

Taccogna Francesco
2023

Abstract

Negative ion production by volumetric processes is investigated in the RAID linear device using experiments and modeling. Measurements by optical emission spectroscopy, cavity ring-down spectroscopy, and Langmuir probe assisted laser photodetachment are combined and reveal that H- and D- ions are distributed in a halo around the plasma column with densities of 2 × 1016 m-3 for only a few kilowatts of RF power in a Cs-free plasma. A hydrogen transport fluid code shows that RAID plasmas have a hot electron core favorable to ro-vibrational excitation and dissociation of H2 molecules. Dissociative attachment to ro-vibrationally excited H2 molecules is the only significant source of H- anywhere in the RAID volume.
2023
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
978-3-031-21475-2
Fluid simulations
Helicon plasmas
Negative ion diagnostics
RAID
Resonant antennas
Volume production
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/450506
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