Effect of Radial Wavevector on Collisional Drift Waves in a Toroidal Heliac
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A 3-field model for collisional drift waves, in the ballooning representation, for a low-pressure stellarator plasma is presented. In particular, the effect of a finite radial mode number (≡ θk) is studied, and the linear growth rates for the fluctuating plasma density, electrostatic potential and electron temperature are computed numerically by solving the 3-field model as an initial-value problem. Numerical results for a 3-field period stellarator with low global magnetic shear are then presented. It is found that, in a system with small global magnetic shear, the case θk = 0 yields the fastest linear growth rate.
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2014 ◽
Vol 51
(3-4)
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pp. 389-402
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1993 ◽
Vol 67
(6)
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pp. 922-934
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2001 ◽
Vol 262
(1)
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pp. 221-228
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