Skip to main content

Nonlinear Periodic Solutions for Isothermal Magnetostatic Atmospheres.

Author name : Eid Sayed K Sayed
Publication Date : 2008-12-23
Journal Name : Phys. Plasmas

Abstract

Magnetohydrodynamic equilibria for a plasma in a gravitational field are investigated analytically. For equilibria with one ignorable spatial coordinate, the equations reduce to a single nonlinear elliptic equation for the magnetic potential
⁠, known as the Grad–Shafranov equation. Specifying the arbitrary functions in the latter equation, one obtains three types of nonlinear elliptic equations (a Liouville equation, a sinh Poisson equation, and a generalization of those with a sum of exponentials). Analytical solutions are obtained using the tanh method; this is elaborated in the Appendix. The solutions are adequate to describe an isothermal atmosphere in a uniform gravitational field showing parallel filaments of diffuse, magnetized plasma suspended horizontally in equilibrium.

Keywords

Magnetic potential - Electromagnetic induction - Solar atmosphere - Partial differential equations Close - Coordinate system ز

Publication Link

https://doi.org/10.1063/1.3036929

Block_researches_list_suggestions

Suggestions to read

Rational design of new thienopyridine heterocycles tethering thiophene moiety as antimicrobial agents: Synthesis and computational biology study
MOUSA OSMAN AHMAD GERMOUSH
Generalized first approximation Matsumoto metric
AMR SOLIMAN MAHMOUD HASSAN
HIDS-IoMT: A Deep Learning-Based Intelligent Intrusion Detection System for the Internet of Medical Things
Ahlem . Harchy Ep Berguiga
Structure–Performance Relationship of Novel Azo-Salicylaldehyde Disperse Dyes: Dyeing Optimization and Theoretical Insights
EBTSAM KHALEFAH H ALENEZY
Contact