Electronic temperatures, densities and plasma X-ray emission of a 14.5 GHz Electron-Cyclotron Resonance Ion Source

Fuente: arXiv
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Autori principali: Gumberidze, Alexander, Trassinelli, Martino, Adrouche, Nacer, Szabo, C., Indelicato, Paul, Haranger, F., Isac, Jean-Michel, Lamour, Emily, Bigot, Eric-Olivier Le, Merot, Jacques, Prigent, Christophe, Rozet, Jean-Pierre, Vernhet, Dominique
Natura: Preprint
Pubblicazione: 2010
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author Gumberidze, Alexander
Trassinelli, Martino
Adrouche, Nacer
Szabo, C.
Indelicato, Paul
Haranger, F.
Isac, Jean-Michel
Lamour, Emily
Bigot, Eric-Olivier Le
Merot, Jacques
Prigent, Christophe
Rozet, Jean-Pierre
Vernhet, Dominique
author_facet Gumberidze, Alexander
Trassinelli, Martino
Adrouche, Nacer
Szabo, C.
Indelicato, Paul
Haranger, F.
Isac, Jean-Michel
Lamour, Emily
Bigot, Eric-Olivier Le
Merot, Jacques
Prigent, Christophe
Rozet, Jean-Pierre
Vernhet, Dominique
contents We have performed a systematic study of the Bremsstrahlung emission from the electrons in the plasma of a commercial 14.5 GHz Electron-Cyclotron Resonance Ion Source. The electronic spectral temperature and the product of ionic and electronic densities of the plasma are measured by analyzing the Bremsstrahlung spectra recorded for several rare gases (Ar, Kr, Xe) as a function of the injected power. Within our uncertainty, we find an average temperature of ? 48 keV above 100W, with a weak dependency on the injected power and gas composition. Charge state distributions of extracted ion beams have been determined as well, providing a way to disentangle the ionic density from the electronic density. Moreover X-ray emission from highly charged argon ions in the plasma has been observed with a high-resolution mosaic crystal spectrometer, demonstrating the feasibility for high-precision measurements of transition energies of highly charged ions, in particular of the magnetic dipole (M1) transition of He-like of argon ions.
format Preprint
id arxiv_https___arxiv_org_abs_1003_0159
institution arXiv
publishDate 2010
record_format arxiv
spellingShingle Electronic temperatures, densities and plasma X-ray emission of a 14.5 GHz Electron-Cyclotron Resonance Ion Source
Gumberidze, Alexander
Trassinelli, Martino
Adrouche, Nacer
Szabo, C.
Indelicato, Paul
Haranger, F.
Isac, Jean-Michel
Lamour, Emily
Bigot, Eric-Olivier Le
Merot, Jacques
Prigent, Christophe
Rozet, Jean-Pierre
Vernhet, Dominique
Plasma Physics
Atomic Physics
Instrumentation and Detectors
We have performed a systematic study of the Bremsstrahlung emission from the electrons in the plasma of a commercial 14.5 GHz Electron-Cyclotron Resonance Ion Source. The electronic spectral temperature and the product of ionic and electronic densities of the plasma are measured by analyzing the Bremsstrahlung spectra recorded for several rare gases (Ar, Kr, Xe) as a function of the injected power. Within our uncertainty, we find an average temperature of ? 48 keV above 100W, with a weak dependency on the injected power and gas composition. Charge state distributions of extracted ion beams have been determined as well, providing a way to disentangle the ionic density from the electronic density. Moreover X-ray emission from highly charged argon ions in the plasma has been observed with a high-resolution mosaic crystal spectrometer, demonstrating the feasibility for high-precision measurements of transition energies of highly charged ions, in particular of the magnetic dipole (M1) transition of He-like of argon ions.
title Electronic temperatures, densities and plasma X-ray emission of a 14.5 GHz Electron-Cyclotron Resonance Ion Source
topic Plasma Physics
Atomic Physics
Instrumentation and Detectors
url https://arxiv.org/abs/1003.0159