2001AIP conference proceedingsRequires access

ECR ion sources at HIRFL

H. W. Zhao

Open publisher page 0 citations

Abstract

There are two Electron Cyclotron Resonance (ECR) ion sources in operation at the axial injection beam line of HIRFL (Heavy Ion Research Facility in Lanzhou). In most cases, the IMP 14.5 GHz ECR ion source is operated for the cyclotron to achieve intense beams. Intense beams of highly charged gaseous and metallic ions could be produced by the ECR ion source. A particular emphasis has been focused on the production of metallic ion beams recently. Metallic ion beams of Ca, Mg, Fe, Ni and Pb were tested with the IMP 14.5 GHz ECR ion source to improve beam intensities and long-term stability considering cyclotron operation. The stable beams of 60 eμA of 24Mg7+, 130 eμA of 40Ca11+, 45 eμA of 56Fe11+, 25 eμA of 58Ni10+ and 17 eμA of Pb27+ were successfully produced. A new ECR ion source, an upgraded version of the IMP 14.5 GHz ECR ion source but with double rf frequency heating (10 GHz+14.5 GHz), is under commissioning. To satisfy the requirements of the heavy ion cooling storage ring which is under construction at Lanzhou, a fully superconducting ECR ion source is being developed for production of intense heavy ion beams of very high charge states, such as Xe30+ and U40+.

About this research paper

What this paper is about

There are two Electron Cyclotron Resonance (ECR) ion sources in operation at the axial injection beam line of HIRFL (Heavy Ion Research Facility in Lanzhou). In most cases, the IMP 14.5 GHz ECR ion source is operated for the cyclotron to achieve intense beams. Intense beams of highly charged gaseous and metallic ions could be produced by the ECR ion source. A particular emphasis has been focused on the production of metallic ion beams recently. Metallic ion beams of Ca, Mg, Fe, Ni and Pb were tested with the IMP 14.5 GHz ECR ion source to improve beam intensities and long-term stability considering cyclotron operation. The stable beams of 60 eμA of 24Mg7+, 130 eμA of 40Ca11+, 45 eμA of 56Fe11+, 25 eμA of 58Ni10+ and 17 eμA of Pb27+ were successfully produced. A new ECR ion source, an upgraded version of the IMP 14.5 GHz ECR ion source but with double rf frequency heating (10 GHz+14.5 GHz), is under commissioning. To satisfy the requirements of the heavy ion cooling storage ring which is under construction at Lanzhou, a fully superconducting ECR ion source is being developed for production of intense heavy ion beams of very high charge states, such as Xe30+ and U40+.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

There are two Electron Cyclotron Resonance (ECR) ion sources in operation at the axial injection beam line of HIRFL (Heavy Ion Research Facility in Lanzhou). In most cases, the IMP 14.5 GHz ECR ion source is operated for the cyclotron to achieve intense beams. Intense beams of highly charged gaseous and metallic ions could be produced by the ECR ion source. A particular emphasis has been focused on the production of metallic ion beams recently. Metallic ion beams of Ca, Mg, Fe, Ni and Pb were tested with the IMP 14.5 GHz ECR ion source to improve beam intensities and long-term stability considering cyclotron operation. The stable beams of 60 eμA of 24Mg7+, 130 eμA of 40Ca11+, 45 eμA of 56Fe11+, 25 eμA of 58Ni10+ and 17 eμA of Pb27+ were successfully produced. A new ECR ion source, an upgraded version of the IMP 14.5 GHz ECR ion source but with double rf frequency heating (10 GHz+14.5 GHz), is under commissioning. To satisfy the requirements of the heavy ion cooling storage ring which is under construction at Lanzhou, a fully superconducting ECR ion source is being developed for production of intense heavy ion beams of very high charge states, such as Xe30+ and U40+.

Key concepts: Ion source, Cyclotron, Ion, Electron cyclotron resonance, Ion beam, Beam (structure), Heavy ion, Materials science

Related papers

Back to paper searchBrowse research topicsOriginal source
ECR ion sources at HIRFL — Research Paper | ScholarLens