A high-current electron beam ion trap as a charge breeder for the reacceleration of rare isotopes at the NSCL

Reacceleration of low-energy rare isotope beams available from gas stopping of fast-fragment beams or from an ISOL target station to energies in the range of 0.3-12 MeV/nucleon is needed for experiments such as low-energy Coulomb excitation and transfer reaction studies and for the precise study of...

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Veröffentlicht in:Review of scientific instruments 2008-02, Vol.79 (2 Pt 2), p.02A706-02A706
Hauptverfasser: Schwarz, S, Bollen, G, Kostin, M, Marti, F, Zavodszky, P, Crespo López-Urrutia, J R, Dilling, J, Kester, O
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Sprache:eng
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Zusammenfassung:Reacceleration of low-energy rare isotope beams available from gas stopping of fast-fragment beams or from an ISOL target station to energies in the range of 0.3-12 MeV/nucleon is needed for experiments such as low-energy Coulomb excitation and transfer reaction studies and for the precise study of astrophysical reactions. The implementation of charge breeding as a first step in a reaccelerator is a key to obtaining a compact and cost-efficient reacceleration scheme. For highest efficiency it is essential that single charge states are obtained in a short breeding time. A low-emittance beam must be delivered. An electron beam ion trap (EBIT) has the potential to meet these requirements. An EBIT-based charge breeder is presently under design and construction at the NSCL as part of the construction of a reaccelerator for stopped beams from projectile fragmentation. This new facility will have the potential to provide low-energy rare isotope beams not yet available elsewhere.
ISSN:0034-6748
1089-7623
DOI:10.1063/1.2801346