Identification of Zonal Flows in a Toroidal Plasma
- A. Fujisawa
- K. Itoh
- H. Iguchi
- K. Matsuoka
- S. Okamura
- A. Shimizu
- T. Minami
- Y. Yoshimura
- K. Nagaoka
- C. Takahashi
- M. Kojima
- H. Nakano
- S Ohsima
- Satoshi Nishimura
- M. Isobe
- C. Suzuki
- Tsuyoshi Akiyama
- KIK. Ida
- K. Toi
- S.‐I. Itoh
- P. H. Diamond
- KIK. Ida
Physical Review Letters · 2004 · American Physical Society
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Abstract
This Letter presents experimental confirmation of the presence of zonal flows in magnetically confined toroidal plasma using an advanced diagnostic system--dual heavy ion beam probes. The simultaneous observation of an electric field at two distant toroidal locations (approximately 1.5 m apart) in the high temperature (approximately 1 keV) plasma provides a fluctuation spectrum of electric field (or flow), a spatiotemporal structure of the zonal flows (characteristic radial length of approximately 1.5 cm and lifetime of approximately 1.5 ms), their long-range correlation with toroidal symmetry (n=0), and the difference in the zonal flow amplitude with and without a transport barrier. These constitute essential elements of turbulence-zonal flow systems, and illustrate one of the fundamental processes of structure formation in nature.
