Helicon plasma in a nonuniform magnetic field
O. V. Braginskii, A. N. Vasil’eva, A. S. Kovalev
Abstract
O. V. Braginskii, A. N. Vasil’eva, A. S. Kovalev
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.
OpenAlex reports 15 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
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