The Project of the Superconducting ECR Ion Source DECRIS-SC2

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V.V.Bekhterev1, S.L.Bogomolov1, V.I.Datskov2, V.M.Drobin2, S.N.Dmitriev1, A.A.Efremov1,
V.N.Loginov1, A.N.Lebedev1, H.Malinowski3, V.V.Seleznev2, A.Shishov2 and
G.P.Tsvineva2. The Project of the Superconducting ECR Ion Source DECRIS-SC2[J]. Chinese Physics C, 2007, 31(S1): 23-26.
V.V.Bekhterev1, S.L.Bogomolov1, V.I.Datskov2, V.M.Drobin2, S.N.Dmitriev1, A.A.Efremov1,
V.N.Loginov1, A.N.Lebedev1, H.Malinowski3, V.V.Seleznev2, A.Shishov2 and
G.P.Tsvineva2. The Project of the Superconducting ECR Ion Source DECRIS-SC2[J]. Chinese Physics C, 2007, 31(S1): 23-26. shu
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Received: 2007-05-30
Revised: 1900-01-01
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The Project of the Superconducting ECR Ion Source DECRIS-SC2

  • JINR, FLNR, Dubna, 141980, Russia2 JINR, LHE, Dubna, 141980, Russia3 Electrotechnical Institute, Warsaw, Poland

Abstract: A new compact version of the "liquid He-free" superconducting Electron Cyclotron Resonance Ion Source, to be used as an injector for the U-400M cyclotron, is presently under construction at the FLNR in collaboration with LHE (JINR). The axial magnetic field of the source is created by the superconducting magnet, and the NdFeB hexapole is used for the radial plasma confinement. The microwave frequency of 14GHz will be used for ECR plasma heating. The DECRIS-SC2 superconducting magnet is designed for the induction of a magnetic field on the axis of the source of up to 1.4T (extraction side) and 1.9T (injection side) at nominal current of 75A. Cooling of the coils is carried out by GM cryocooler with cooling power of 1W at the temperature 4.5K. The basic design features of the superconducting magnet and of the ion source are presented. The main parts of the source are in production. The first beam test of the source is expected in the beginning of 2007.

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