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April 5, 2026SHILAP Revista de lepidopterología3 citationsOpen Access

On the Validity of Quasilinear Plasma Transport Equations

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RSReinhard SchlickeiserMKMartin Kröger

Key Points

  • The research examines the validity of two versions of quasilinear transport theory in partially turbulent electromagnetic fields.
  • Analyzed two variants of quasilinear transport theory: V-QLT and K-QLT.
  • Assessed conditions under which each theory applies in homogeneous turbulence and magnetized plasmas.
  • Evaluated the impact of particle propagation times and density fluctuations on validity conditions.
  • V-QLT holds only for short propagation times, while K-QLT has a much weaker condition for validity.
  • K-QLT is applicable over all propagation times but includes additional drag terms.
  • The relative fluctuation level must be small for V-QLT to remain valid across multiple gyroperiods.

Abstract

Abstract Significant differences regarding their validity and applicability are found for the two variants of the quasilinear transport theory (QLT) for charged particles in partially turbulent electromagnetic fields. In homogeneous turbulence, the quasilinear theory, based on the Vlasov equation for the smoothly varying phase space density of particles (V-QLT), only holds for particle propagation times less than t − t 0 < p /∣ δ K ∣, where δ K denotes the random Lorentz force and p the particle momentum. In magnetized plasmas, this requires propagation times shorter than τ gyro /2 πq L , where τ gyroso denotes the gyroperiod, so that the condition can persist over many gyroperiods only when the relative fluctuation level q L = ∣ δ B ∣/ B 0 is small. This condition does not apply to the quasilinear theory, based on the Klimontovich equation and phase space density, which accounts for the intrinsically discrete nature of matter (K-QLT). A much weaker K-QLT validity condition ∣ δn a ∣ < n a for the density fluctuations is found. The price to pay for the less severe validity condition and the much wider applicability for all propagation times is the additional presence of the drag terms, absent in V-QLT, besides the momentum diffusion terms.

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Cite This Study

Schlickeiser et al. (2026) studied this question.

synapsesocial.com/papers/69d1fb20a79560c99a0a1806https://doi.org/10.3847/1538-4357/ae5227
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