2001Plasma Physics ReportsRequires access

Helicon plasma in a nonuniform magnetic field

O. V. Braginskii, A. N. Vasil’eva, A. S. Kovalev

Open publisher page 15 citations

Abstract

The distributions of the electron density in a plasma produced by helicon waves and the correspond-ing wave amplitudes and phases are studied experimentally. The measurements were carried out in an argon plasma at a pressure of 3 mtorr and at an input RF power of up to 600 W. The magnetic field was caried in the range from 0 to 200 G. The efficiency of plasma production in both uniform and nonuniform fields is investigated. It is shown that, in a nonuniform magnetic field, the electron density can be substantially increased (up to 5×10 12 cm −3 ) by placing an antenna in the region in which the magnetic field is weaker than in the main plasma.

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What this paper is about

The distributions of the electron density in a plasma produced by helicon waves and the correspond-ing wave amplitudes and phases are studied experimentally. The measurements were carried out in an argon plasma at a pressure of 3 mtorr and at an input RF power of up to 600 W. The magnetic field was caried in the range from 0 to 200 G. The efficiency of plasma production in both uniform and nonuniform fields is investigated. It is shown that, in a nonuniform magnetic field, the electron density can be substantially increased (up to 5×10 12 cm −3 ) by placing an antenna in the region in which the magnetic field is weaker than in the main plasma.

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Available abstract

The distributions of the electron density in a plasma produced by helicon waves and the correspond-ing wave amplitudes and phases are studied experimentally. The measurements were carried out in an argon plasma at a pressure of 3 mtorr and at an input RF power of up to 600 W. The magnetic field was caried in the range from 0 to 200 G. The efficiency of plasma production in both uniform and nonuniform fields is investigated. It is shown that, in a nonuniform magnetic field, the electron density can be substantially increased (up to 5×10 12 cm −3 ) by placing an antenna in the region in which the magnetic field is weaker than in the main plasma.

Key concepts: Helicon, Plasma, Magnetic field, Electromagnetic electron wave, Atomic physics, Argon, Waves in plasmas, Magnetic pressure

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