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Multigan®: first experimental results.

L Maunoury1, J Y Pacquet, P Baret

  • 1GANIL, bd H. Becquerel BP 55027, F-14076 Caen cedex 05, France. maunoury@ganil.fr

The Review of Scientific Instruments
|March 3, 2012
PubMed
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This summary is machine-generated.

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A novel multicharged ion source design, based on the MONO1000 Electron Cyclotron Resonance Ion Source (ECRIS), shows promise for efficient ion beam production. Initial tests confirm plasma ignition at low pressure and RF power, demonstrating its potential for generating multicharged ions.

Area of Science:

  • Physics
  • Plasma Physics
  • Ion Source Technology

Background:

  • Electron Cyclotron Resonance Ion Sources (ECRIS) are crucial for generating ion beams.
  • Existing ECRIS designs have limitations in plasma accessibility and operational efficiency.
  • A new ECRIS design, MONO1000, was developed to address these challenges.

Purpose of the Study:

  • To present and evaluate a new multicharged ion source design based on the MONO1000 ECRIS.
  • To assess the performance of the novel source in terms of plasma ignition and multicharged ion beam production.

Main Methods:

  • Mechanical assembly and testing of the new ECRIS design.
  • Evaluation of plasma ignition parameters (pressure and RF power).
  • Measurement of average charge states for Argon (Ar) and Xenon (Xe) ion beams.

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Main Results:

  • Successful plasma ignition achieved at low pressure (10^-6 mbar) and low RF power (10 W).
  • Demonstrated production of multicharged ion beams with average charge states of = 1.30 for Ar and = 1.85 for Xe.
  • The design facilitates direct contact with the Electron Cyclotron Resonance plasma.

Conclusions:

  • The new MONO1000 ECRIS design exhibits efficient plasma ignition under favorable conditions.
  • The source shows significant potential for producing high-quality multicharged ion beams.
  • Further research and development are warranted to fully explore its capabilities.