1995
DOI: 10.1103/physrevlett.75.4421
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Enhanced Confinement and Stability in DIII-D Discharges with Reversed Magnetic Shear

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Cited by 607 publications
(439 citation statements)
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“…Because of symmetry any equilibrium quantity depends solely on the radial distance r; therefore Eqs. (2), (4)[and (9)], (6), and (7) are identically satisfied. Also the flow for both fluid species is incompressible (∇ · v α = 0).…”
Section: Two-fluid Cylindrical Equilibria With Reversed Magnetic Shearmentioning
confidence: 99%
See 3 more Smart Citations
“…Because of symmetry any equilibrium quantity depends solely on the radial distance r; therefore Eqs. (2), (4)[and (9)], (6), and (7) are identically satisfied. Also the flow for both fluid species is incompressible (∇ · v α = 0).…”
Section: Two-fluid Cylindrical Equilibria With Reversed Magnetic Shearmentioning
confidence: 99%
“…Therefore the slightly reduced set of equilibrium equations we will use in the following consists of Eqs. (2), (3), (4) for ions only, (5), (6), (7), (8), and (10). By expressing B θ in terms of the safety factor, q = rB θ /(R 0 B z ), with 2πR 0 associated with the length of the plasma column, and introducing the normalized radius ρ = r/r 0 with r 0 corresponding to the plasma surface, Eq.…”
Section: Two-fluid Cylindrical Equilibria With Reversed Magnetic Shearmentioning
confidence: 99%
See 2 more Smart Citations
“…Another situation in which the presence of magnetic field chaos can help plasma confinement is the creation of a transport barrier to reduce particle escape in tokamaks. It has been recently observed that this may occur if there is a negative magnetic shear region within the plasma column [5,6]. Such a region is created by means of a non-peaked plasma current density, corresponding to a non-monotonic radial profile for the safety factor [7].…”
Section: Introductionmentioning
confidence: 99%