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Selection and design of ion sources for use at the Holifield Radioactive Ion Beam Facility (abstract)a)

 

作者: G. D. Alton,   D. L. Haynes,   G. D. Mills,   D. K. Olsen,  

 

期刊: Review of Scientific Instruments  (AIP Available online 1994)
卷期: Volume 65, issue 4  

页码: 1391-1391

 

ISSN:0034-6748

 

年代: 1994

 

DOI:10.1063/1.1144970

 

出版商: AIP

 

数据来源: AIP

 

摘要:

The Holifield Radioactive Ion Beam Facility now under construction at the Oak Ridge National Laboratory will use the 25‐MV tandem accelerator for the acceleration of radioactive ion beams to energies appropriate for research in nuclear physics; negative ion beams are, therefore, required for injection into the tandem accelerator. Because charge exchange is an efficient means for converting initially positive ion beams to negative ion beams, both positive and negative ion sources are viable options for use at the facility. The choice of the type of ion source will depend on the overall efficiency for generating the radioactive species of interest. Although direct‐extraction negative ion sources are clearly desirable, the ion formation efficiencies are often too low for practical consideration; for this situation, positive ion sources, in combination with charge exchange, are the logical choice. The high‐temperature version of the CERN‐ISOLDE positive ion source has been selected and a modified version of the source designed and fabricated for initial use at the facility because of its low emittance, relatively high ionization efficiencies and species versatility, and because it has been engineered for remote installation, removal and servicing as required for safe handling in a high‐radiation‐level ISOL facility. The source will be primarily used to generate ion beams from elements with intermediate to low ionization potentials. Prototype plasma‐sputter negative ion sources and negative surface‐ionization sources are under design consideration for generating radioactive ion beams from high‐electron‐affinity elements. The design features of these sources and expected efficiencies and beam qualities (emittances) will be described in this report.

 

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