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Status report on the development of a tubular electron beam ion source

Identifieur interne : 001B91 ( Main/Exploration ); précédent : 001B90; suivant : 001B92

Status report on the development of a tubular electron beam ion source

Auteurs : E. D. Donets [Russie, Allemagne] ; E. E. Donets [Russie] ; R. Becker [Russie] ; L. Liljeby ; K.-G. Rensfelt ; E. N. Beebe ; A. I. Pikin

Source :

RBID : Pascal:04-0243299

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Abstract

The theoretical estimations and numerical simulations of tubular electron beams in both beam and reflex mode of source operation as well as the off-axis ion extraction from a tubular electron beam ion source (TEBIS) are presented. Numerical simulations have been done with the use of the IGUN and OPERA-3D codes. Numerical simulations with IGUN code show that the effective electron current can reach more than 100 A with a beam current density of about 300-400 A/cm2 and the electron energy in the region of several KeV with a corresponding increase of the ion output. Off-axis ion extraction from the TEBIS, being the nonaxially symmetric problem, was simulated with OPERA-3D (SCALA) code. The conceptual design and main parameters of new tubular sources which are under consideration at JINR, MSL, and BNL are based on these simulations. © 2004 American Institute of Physics.


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<div type="abstract" xml:lang="en">The theoretical estimations and numerical simulations of tubular electron beams in both beam and reflex mode of source operation as well as the off-axis ion extraction from a tubular electron beam ion source (TEBIS) are presented. Numerical simulations have been done with the use of the IGUN and OPERA-3D codes. Numerical simulations with IGUN code show that the effective electron current can reach more than 100 A with a beam current density of about 300-400 A/cm
<sup>2</sup>
and the electron energy in the region of several KeV with a corresponding increase of the ion output. Off-axis ion extraction from the TEBIS, being the nonaxially symmetric problem, was simulated with OPERA-3D (SCALA) code. The conceptual design and main parameters of new tubular sources which are under consideration at JINR, MSL, and BNL are based on these simulations. © 2004 American Institute of Physics.</div>
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