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- W2236343705 abstract "Methods of the quasilinear theory of plasma stability were used to determine saturation amplitudes and spectralacoustic oscillations in an inhomogeneous plasma in a strong magnetic fieid. The full energy of ion-acoustic oscillations at the saturation stage proved less than that of the thermal motion of the electrons of the plasma by a value of the order of (m/sup e/)/(m/sup i/)/ sup 2//(u/sub 0/)/( ,/sub Te/) (where m/sup e/, m/sup i/ are the masses of the electrons and ions u/sub 0/ and /sub T//sub e/ are the average and thermal velocity of the electrons). The current of particles across the magnetic field due to excitation of ionacoustic oscillations is computed. The current in a direction perpendicular to the magnetic field and the gradient of density and temperature, giving rise to diamagnetism of the plasma, and the diffusion current in the direction of the gradient were measured. The ratio of the diffusion due to the excitation of the oscillations under consideration to the diffusion coefficient due to paired collisions proved to be of the order of (m/sup e/)/(m/ sup i/)/sup 2//(u/sub 0./)/( /sub Te/) N/sub D/: (w here N/sub D/ is the number of particies in a Debye sphere). N/sup D/ >>more » 1; however, since (m/sup e/)/ (m/sup i/) st run. Concent 10/sup -3/ the ratio (D/sup (osc))//(D/sup (st)) / cannot be very great, Under stellarator conditions the value of the diffusion due to excitation of ion-acoustic oscillations is 4-6 orders less than the experimentally observed diffusion and, therefore, the anomalously short lifetime of plasma in the stellarator cannot be explained by excitation of ionacoustic oscillations. (auth)« less" @default.
- W2236343705 created "2016-06-24" @default.
- W2236343705 creator A5017287573 @default.
- W2236343705 date "1963-02-01" @default.
- W2236343705 modified "2023-09-26" @default.
- W2236343705 title "DIFFUSION IN AN INHOMOGENEOUS RAREFIED PLASMA DUE TO EXCITATION OF ION- ACOUSTIC OSCILLATIONS" @default.
- W2236343705 hasPublicationYear "1963" @default.
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