A Cyclotron Complex for Accelerating Multicharged Ions up to Relativistic Energies
The accelerating complex for the production of the multicharged ion beams up to uranium with a final energy of 300 MeV/amu is described. It is supposed to use a Wideroe type accelerator at the first stage of acceleration (up to 0.59 MeV/amu), a conventional isochronous cyclotron at the second stage...
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Veröffentlicht in: | IEEE transactions on nuclear science 1979-01, Vol.26 (2), p.2024-2029 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The accelerating complex for the production of the multicharged ion beams up to uranium with a final energy of 300 MeV/amu is described. It is supposed to use a Wideroe type accelerator at the first stage of acceleration (up to 0.59 MeV/amu), a conventional isochronous cyclotron at the second stage (up to 10 MeV/amu), and an isochronous cyclotron with superconducting magnet coils at the final stage. Such a structure of the accelerating complex provides high beam intensity at the full energy of 300 MeV/amu (about 1013 particles per second for uranium), and the intermediate energy of 10 MeV/amu (about 1014 particles per second for uranium). Some preliminary parameters of the accelerator are presented. |
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ISSN: | 0018-9499 1558-1578 |
DOI: | 10.1109/TNS.1979.4329801 |