Effect of magnetic-field configuration on the beam intensity from electron cyclotron resonance ion source and RIKEN superconducting electron cyclotron resonance ion source
Author:
Publisher
AIP Publishing
Subject
Instrumentation
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2149304
Reference8 articles.
1. Results and interpretation of high frequency experiments at 28 GHz in ECR ion sources, future prospects
2. Effect of minimum strength of mirror magnetic field (Bmin) on production of highly charged heavy ions from RIKEN liquid-He-free super conducting electron–cyclotron resonance ion source (RAMSES)
3. Electron cyclotron resonance ion source developments in RIKEN (invited)
4. Time evolution of charge states in an electron cyclotron resonance ion sourcea)
5. Plasma diagnostics at electron cyclotron resonance ion sources by injection of laser ablated fluxes of metal atoms
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1. The preliminary tests of the high charge state all-permanent magnet ECR ion source DECRIS-PM;AIP Conference Proceedings;2018
2. Intense highly charged ion beam production and operation with a superconducting electron cyclotron resonance ion source;Physical Review Accelerators and Beams;2017-09-21
3. A new structure of superconducting magnetic system for 50 GHz operations (invited);Review of Scientific Instruments;2012-02
4. New development of advanced superconducting electron cyclotron resonance ion source SECRAL (invited);Review of Scientific Instruments;2010-02
5. The particle-in-cell simulation and Monte Carlo collision simulation of the interaction between electrons and microwave in electron cyclotron resonance discharge;Acta Physica Sinica;2009
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