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BETSI,一种用于法国原子能委员会萨克莱中心离子源优化的新型测试平台。

BETSI, a new test bench for ion sources optimization at CEA SACLAY.

作者信息

Tuske O, Adroit G, Delferrière O, De Menezes D, Gauthier Y, Gobin R, Harrault F

机构信息

CEA/Saclay, DSM/DAPNIA, Gif/Yvette, France.

出版信息

Rev Sci Instrum. 2008 Feb;79(2 Pt 2):02B710. doi: 10.1063/1.2805625.

DOI:10.1063/1.2805625
PMID:18315201
Abstract

In the framework of several International HPPA projects (such as IFMIF, IPHI, and Spiral2) the CEA handles the design and the developments of several electron cyclotron resonance (ECR) ion sources. For the IFMIF EVEDA demonstrator, a 140 mA cw extracted deuteron beam will be required for high yield of neutron production. For radioactive ion production in the Spiral2 project, several milliamperes of deuterons will be delivered with a permanent magnet source. The optimization of the beam quality at the entrance of the radio frequency quadropole (RFQ) accelerator system triggered the need of a new test bench for ion source optimization and beam qualification. The BETSI ion source test bench will operate up to 50 kV and ignite cw or pulsed hydrogen plasma with a 2.45 GHz magnetron. Great care has already been taken to design electrostatic optics of the extraction system to minimize the emittance growth. Plasma diagnostics will be inserted in the source chamber and several beam diagnostics (emittance and current measurements, beam species analysis) will also be implemented on the low energy beam line transport (LEBT). These diagnostics allow the simultaneous analysis of the beam quality with the plasma parameters of the source. Regional funding request will also be needed to improve the LEBT for space charge compensation measurements. The design of the present and upgraded test bench will be reported as well as the first extracted beam analysis.

摘要

在几个国际HPPA项目(如IFMIF、IPHI和Spiral2)的框架内,法国原子能委员会负责多个电子回旋共振(ECR)离子源的设计与开发。对于IFMIF EVEDA演示器,为了实现高产额的中子产生,需要140 mA连续波提取氘束。对于Spiral2项目中的放射性离子产生,将通过永磁体源提供几毫安的氘离子。射频四极杆(RFQ)加速器系统入口处束流质量的优化引发了对离子源优化和束流鉴定新测试平台的需求。BETSI离子源测试平台将在高达50 kV的电压下运行,并使用2.45 GHz磁控管点燃连续波或脉冲氢等离子体。在设计提取系统的静电光学时已经非常小心,以尽量减少发射度增长。等离子体诊断将插入源腔室,并且还将在低能束线传输(LEBT)上实施几种束流诊断(发射度和电流测量、束流种类分析)。这些诊断能够同时分析束流质量和源的等离子体参数。还需要区域资金申请来改进用于空间电荷补偿测量的LEBT。将报告当前和升级后的测试平台的设计以及首次提取束流分析。

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