Stationary distribution functions for ohmic Tokamak-plasmas in the weak-collisional transport regime by MaxEnt principle

Sonnino, Giorgio;Peeters, Philippe;Sonnino, Alberto;Nardone, Pasquale;Steinbrecher, György
(2015) Journal of Plasma Physics — Vol. 81, n° 01, p. 905810116 (2014)

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  • Sonnino, GiorgioUniversité Libre de Bruxelles
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  • Peeters, PhilippeUniversité Libre de Bruxelles
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  • Sonnino, AlbertoUCLouvain
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  • Nardone, PasqualeUniversité Libre de Bruxelles
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  • Steinbrecher, GyörgyUniversity of Craiova
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Abstract
In previous works, we derived stationary density distribution functions (DDF) where the local equilibrium is determined by imposing the maximum entropy (MaxEnt) principle, under the scale invariance restrictions, and the minimum entropy production theorem. In this paper we demonstrate that it is possible to reobtain these DDF solely from the MaxEnt principle subject to suitable scale invariant restrictions in all the variables. For the sake of concreteness, we analyse the example of ohmic, fully ionized, tokamak-plasmas, in the weak-collisional transport regime. In this case we show that it is possible to reinterpret the stationary distribution function in terms of the Prigogine distribution function where the logarithm of the DDF is directly linked to the entropy production of the plasma. This leads to the suggestive idea that also the stationary neoclassical distribution functions, for magnetically confined plasmas in the collisional transport regimes, may be derived solely by the MaxEnt principle.
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Sonnino, G., Peeters, P., Sonnino, A., Nardone, P., & Steinbrecher, G. (2015). Stationary distribution functions for ohmic Tokamak-plasmas in the weak-collisional transport regime by MaxEnt principle. Journal of Plasma Physics, 81(01), 905810116. https://doi.org/10.1017/s0022377814000713 (Original work published 2014)