2010
DOI: 10.1017/s1743921311007010
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Kinetic closure conditions for quasi-stationary collisionless axisymmetric magnetoplasmas

Abstract: Abstract.A characteristic feature of fluid theories concerns the difficulty of uniquely defining consistent closure conditions for the fluid equations. In fact it is well known that fluid theories cannot generally provide a closed system of equations for the fluid fields. This feature is typical of collisionless plasmas where, in contrast to collisional plasmas, asymptotic closure conditions do not follow as a consequence of an H-theorem This issue is of particular relevance in astrophysics where fluid approac… Show more

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Cited by 2 publications
(4 citation statements)
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“…Indeed, for a collisionless plasma the species tensor pressure is generally non isotropic (see the related discussions in Paper I and Ref. [16]) such that Eq. ( 53) is identically satisfied.…”
Section: Quasi-stationary Accretion Flowmentioning
confidence: 99%
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“…Indeed, for a collisionless plasma the species tensor pressure is generally non isotropic (see the related discussions in Paper I and Ref. [16]) such that Eq. ( 53) is identically satisfied.…”
Section: Quasi-stationary Accretion Flowmentioning
confidence: 99%
“…As a further development, in Paper I and in Ref. [16], it was pointed out that the kinetic treatment allows one to construct exact fluid equilibria (identically satisfying the corresponding fluid equations). Using a perturbative expansion, a well-defined set of kinetic closure conditions was determined analytically for the relevant stationary moment equations.…”
Section: Introductionmentioning
confidence: 99%
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“…in which ∆Π 1 s and ∆Π 2 s are diagonal first-order anisotropic corrections to the pressure tensor, while ∆Π 3 s in this basis is generally non-diagonal. For strongly-magnetized plasmas and closed magnetic surfaces, the precise form of the tensor pressure has been given in [22]. The physical properties of the solutions (69) and (70) can be summarized as follows:…”
Section: Pressure Tensor and Equations Of Statementioning
confidence: 99%