Hostname: page-component-848d4c4894-v5vhk Total loading time: 0 Render date: 2024-06-17T12:25:04.315Z Has data issue: false hasContentIssue false

Plasma biasing by non-resonant ponderomotive forces of radio-frequency waves

Published online by Cambridge University Press:  13 March 2009

R. van Nieuwenhove
Affiliation:
Association Euratom–Etat Belge, Département de Physique Statistique et Plasmas, CP 231, Université Libre de Bruxelles, Campus Plaine, 1050 Bruxelles, Belgium
V. Petržíka
Affiliation:
Association Euratom–Etat Belge, Département de Physique Statistique et Plasmas, CP 231, Université Libre de Bruxelles, Campus Plaine, 1050 Bruxelles, Belgium
J. A. Tataronis
Affiliation:
Association Euratom–Etat Belge, Département de Physique Statistique et Plasmas, CP 231, Université Libre de Bruxelles, Campus Plaine, 1050 Bruxelles, Belgium

Abstract

A numerical code that computes stationary radial electric fields E0r induced by ponderomotive forces of radio-frequency waves is developed. The computed value of E0r is typically several hundred volts per centimetre when the wave frequency is 1 % lower or higher than the ion-cyclotron frequency. This value of E0r suggests that the ponderomotively induced electric field would be an effective bias in tokamaks. Numerical data are presented to illustrate the properties of this bias field.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1995

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

Antonsen, T. M. & Yoshioka, K. 1986 Phys. Fluids 29, 2235.CrossRefGoogle Scholar
Askinazi, L. G., Golant, V. E., Lebedev, S. V., Rozhanskij, V. A. & Tendler, M. 1992 Nucl. Fusion 32, 271.CrossRefGoogle Scholar
Chan, V. S. & Chiu, S. C. 1993 Phys. Fluids B 5, 3590.CrossRefGoogle Scholar
Chan, V. S., Miller, R. L. & Ohkawa, T. 1990 a Phys. Fluids B 2, 944.CrossRefGoogle Scholar
Chan, V. S., Miller, R. L. & Ohkawa, T. 1990 b Phys. Fluids B 2, 1441.CrossRefGoogle Scholar
Colestock, P. L., Cohen, S., Hosea, J. C., Hwang, D. Q., Greene, G. J., Wilson, J. R., Ono, M., Manos, D., Budny, R., Hammett, G., & Kaita, R. 1985 J. Vac. Sci. Technol. A 3, 1211.CrossRefGoogle Scholar
Coronado, M. & Talmadge, J. N. 1993 Phys. Fluids B 5, 1200.CrossRefGoogle Scholar
Demirkhanov, R. A., Kirov, A. G., Ruchko, L. F. & Sukachev, A. V. 1981 Proceedings of 10th European Conference on Plasma Physics and Controlled Fusion, Moscow, Vol. 1, p. E–7. Sovincentr, Moscow.Google Scholar
Elefimov, A. G. 1991 Fiz. Plazmy 17, 379.Google Scholar
Elfimov, A. G., Petržíka, V. & Tataronis, J. A. 1994 Phys. Plasma 1, 2882.CrossRefGoogle Scholar
England, A. C., Eldridge, O. C., Knowlton, S. F., Porkolab, M. & Wilson, J. R. 1989 Nucl. Fusion 29, 1527.CrossRefGoogle Scholar
Fukuyama, A., Itoh, S. & Itoh, K. J.Phys. Soc. Jpn 51, 1010.CrossRefGoogle Scholar
Fukuyama, A., Itoh, K., Itoh, S. & Hamamatsu, K. 1993 Phys. Fluids B 5, 539.CrossRefGoogle Scholar
Inoue, S. & Itoh, K. 1981 Proceedings of 8th Conference on Plasma Physics and Controlled Fusion Research, Brussels, 1980, Vol.2, p. 649. International Atomic Energy Agency, Vienna.Google Scholar
Kauschke, V. 1992 Plasma Phys. Contr. Fusion 34, 1303.CrossRefGoogle Scholar
Klíma, R. 1980 Czech. J. Phys. B 30, 874.CrossRefGoogle Scholar
Klíma, R. & Petržíka, V. 1980 Czech. J. Phys. B 30, 1002.CrossRefGoogle Scholar
Litwin, C. 1994 Phys. Plasmas 1, 515.CrossRefGoogle Scholar
Mett, R. R. 1992 Phys. Fluids B 4, 225.CrossRefGoogle Scholar
Mett, R. R. & Tataronis, J. 1989 Phys. Rev. Lett. 63, 1380.CrossRefGoogle Scholar
Mett, R. R. & Tataronis, J. 1990 Phys. Fluids B 2, 2334.CrossRefGoogle Scholar
Mett, R. R. & Taylor, J. B. 1992 Phys. Fluids B 4, 77.Google Scholar
Moroz, P. E. 1993 Plasma Phys. Contr. Fusion 35, 1145.CrossRefGoogle Scholar
Ohkawa, T. 1989 Comments Plasma Phys. Contr. Fusion 12, 165.Google Scholar
Petržíka, V. 1991 a Plasma Phys. Contr. Fusion 33, 365.CrossRefGoogle Scholar
Petržíka, V. 1991 b Proceedings of IAEA Technical Committee Meeting on Fast Wave Current Drive in Reactor Scale Tokamaks, Arles (France), 23–25 September 1991 (ed. Moreau, D., Bécoulet, A. & Peysson, Y.), p. 190. CEA Cadarache.Google Scholar
Petržíka, V. 1993 J. Plasma Phys. 49, 55.CrossRefGoogle Scholar
Petržíka, V. 1994 Aust. J. Phys. 47, 315.CrossRefGoogle Scholar
Petržíka, V. & Tataronis, J. A. 1994 Plasma Phys. Contr. Fusion 36, 1027.CrossRefGoogle Scholar
Petržíka, V.Leuterer, F., Soeldner, F. X., Giannone, L. & Schubert, R. 1991 Nucl. Fusion 31, 1758.CrossRefGoogle Scholar
Petržíka, V.Tataronis, J. A. & Dewar, R. L. 1994 Bull. Am. Phys. Soc. 39, 1624.Google Scholar
Sperling, J. L. 1978 Phys. Fluids 21, 221.CrossRefGoogle Scholar
Steinmetz, K. et LIII al. 1987 Phys. Rev. Lett. 58, 124.CrossRefGoogle Scholar
Taylor, J. B. 1989 Phys. Rev. Lett. 63, 1384.CrossRefGoogle Scholar
Wang, E. Y., Wang, X., Diebold, B., Oliva, S., Winz, G., Cui, B., Doczy, M., Kishinevsky, M., Intrator, T., Vukovic, M., Kant, G., Meyer, J., Brouchous, D. & Hershkowitz, N. 1993 Bull. Am. Phys. Soc. 38, 2025.Google Scholar
Weynants, R. R., Bora, D., Delvigne, T., Durodie, F., Gaigneaaux, M., Giesen, B., Ivanov, R. S., Lie, Y. T., Messianen, A. M., Moyer, R. A., Samm, U., Schorn, R. P., Schweer, B., Sticklemann, C., Telesca, G., Van, Nieuwenhove R., Van Oost, G., Van Wassenhove, O., Vandenplas, P. E., Wolf, G. H. & Yang, J. W. 1991 Proceedings of the 13th IAEA Conference, Washington, DC, Vol. 1, p. 473. International Atomic Energy Agency, Vienna.Google Scholar