On the longitudinal distribution of electric field in the acceleration zones of plasma accelerators and thrusters with closed electron drift


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Abstract

The long-term experience in controlling the electric field distribution in the discharge gaps of plasma accelerators and thrusters with closed electron drift and the key ideas determining the concepts of these devices and tendencies of their development are analyzed. It is shown that an electrostatic mechanism of ion acceleration in plasma by an uncompensated space charge of the cloud of magnetized electrons “kept” to the magnetic field takes place in the acceleration zones and that the electric field distribution can be controlled by varying the magnetic field in the discharge gap. The role played by the space charge makes the mechanism of ion acceleration in this type of thrusters is fundamentally different from the acceleration mechanism operating in purely electrostatic thrusters.

About the authors

V. P. Kim

Moscow Aviation Institute

Author for correspondence.
Email: riame4@sokol.ru
Russian Federation, Moscow, 125080


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