Self-supporting CVD diamond charge state conversion surfaces for high resolution imaging of low-energy neutral atoms in space plasmas
In: Applied surface science, Jg. 313 (2014), S. 293-303
academicJournal
- print, 25 ref
Zugriff:
Two polycrystalline diamond surfaces, manufactured by chemical vapour deposition (CVD) technique, are investigated regarding their applicability as charge state conversion surfaces (CS) for use in a low energy neutral atom imaging instrument in space research. The capability of the surfaces for converting neutral atoms into negative ions via surface ionisation processes was measured for hydrogen and oxygen with particle energies in the range from 100 eV to 1 keV and for angles of incidence between 6° and 15°. We observed surface charging during the surface ionisation processes for one of the CVD samples due to low electrical conductivity of the material. Measurements on the other CVD diamond sample resulted in ionisation efficiencies of ~2% for H and up to 12% for O. Analysis of the angular scattering revealed very narrow and almost circular scattering distributions. Comparison of the results with the data of the CS of the IBEX-Lo sensor shows that CVD diamond has great potential as CS material for future space missions.
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Self-supporting CVD diamond charge state conversion surfaces for high resolution imaging of low-energy neutral atoms in space plasmas
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Autor/in / Beteiligte Person: | NEULAND, M. B ; RIEDO, A ; SCHEER, J. A ; WURZ, P |
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Zeitschrift: | Applied surface science, Jg. 313 (2014), S. 293-303 |
Veröffentlichung: | Amsterdam: Elsevier, 2014 |
Medientyp: | academicJournal |
Umfang: | print, 25 ref |
ISSN: | 0169-4332 (print) |
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