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Trapping and Confinement of Fast Electrons in a Magnetic Pit for a Scheme of Two-Stage Heating of Plasma by Electron Beam in a Solenoid

Vitaly T. Astrelin, Eugeny V. Bobukh

Fusion Science and Technology / Volume 35 / Number 1T / January 1999 / Pages 299-303

Poster Presentations / dx.doi.org/10.13182/FST99-A11963871

Published:February 8, 2018

A numerical simulation of decelerating, scattering, and trapping fast electrons by plasma in a magnetic trap is reported. Fast non-thermal electrons are generated via the interaction of the relativistic electron beam with the plasma. Their energy significantly exceeds the thermal energy of plasma particles. For real experimental conditions where the mean free path of electrons is larger than the length of a local magnetic pit, the kinetic equation for distribution function of electrons is numerically solved. The effect of electron scattering and trapping into the pit is calculated.