Published December 1994 | Version v1
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Analysis of instability growth and collisionless relaxation in thermionic converters using 1-D PIC simulations

Description

This work investigates the role that the beam-plasma instability may play in a thermionic converter. The traditional assumption of collisionally dominated relaxation is questioned, and the beam-plasma instability is proposed as a possible dominant relaxation mechanism. Theory is developed to describe the beam-plasma instability in the cold-plasma approximation, and the theory is tested with two common Particle-in-Cell (PIC) simulation codes. The theory is first confirmed using an unbounded plasma PIC simulation employing periodic boundary conditions, ES1. The theoretically predicted growth rates are on the order of the plasma frequencies, and ES1 simulations verify these predictions within the order of 1%. For typical conditions encountered in thermionic converters, the resulting growth period is on the order of 7 x 10-11 seconds. The bounded plasma simulation PDP1 was used to evaluate the influence of finite geometry and the electrode boundaries. For this bounded plasma, a two-stream interaction was supported and resulting in nearly complete thermalization in approximately 5 x 10-10 seconds. Since the electron-electron collision rate of 109 Hz and the electron atom collision rate of 107 Hz are significantly slower than the rate of development of these instabilities, the instabilities appear to be an important relaxation mechanism

Availability note (English)

Available from INIS in electronic form; ALSO AVAILABLE FROM OSTI AS DE99001604; NTIS; US GOVT. PRINTING OFFICE DEP.

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Publishing Information

Imprint Pagination
70 p.
Report number
DOE/SF/17799--T4

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