Andromede project: Surface analysis and modification with probes from hydrogen to nano-particles in the MeV energy range

Abstract : The Andromede project is the center of a multi-disciplinary team which will build a new instrument for surface modification and analysis using the impact of probes from hydrogen to nano-particles (Au400+4) in the MeV range. For this new instrument a series of atomic, polyatomic, molecular and nano-particle ion beams will be delivered using two ion sources in tandem, a liquid metal ion source and an electron cyclotron resonance source. The delivered ion beams will be accelerated to high energy with a 4 MeV van de Graaff type accelerator. By using a suite of probes in the MeV energy range, ion beam analysis techniques, MeV atomic and cluster secondary ion mass spectrometry can all be performed in one location. A key feature of the instrument is its ability to produce an intense beam for injection into the accelerator. The commissioning of the two sources shows that intense beams from atomic ions to nano-particles can be delivered for subsequent acceleration. The calculations and measurements for the two sources are presented.
Type de document :
Communication dans un congrès
Proceedings of the 19th International Conference on Ion Beam Modification of Materials (IBMM 2014), Sep 2014, Leuven, Belgium. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 365, pp.367-370, 2015, 〈10.1016/j.nimb.2015.07.090〉
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http://hal.in2p3.fr/in2p3-01256329
Contributeur : Sophie Heurteau <>
Soumis le : jeudi 14 janvier 2016 - 16:25:38
Dernière modification le : jeudi 11 janvier 2018 - 06:12:41

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M. J. Eller, E. Cottereau, B. Rasser, E. Verzeroli, B. Agnus, et al.. Andromede project: Surface analysis and modification with probes from hydrogen to nano-particles in the MeV energy range. Proceedings of the 19th International Conference on Ion Beam Modification of Materials (IBMM 2014), Sep 2014, Leuven, Belgium. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 365, pp.367-370, 2015, 〈10.1016/j.nimb.2015.07.090〉. 〈in2p3-01256329〉

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