MHD mode coupling in the neighbourhood of a 2D null point
arXiv:0712.2402 · doi:10.1051/0004-6361:20065558
Abstract
At this time there does not exist a robust set of rules connecting low and high waves across the layer. The work here contributes specifically to what happens when a low fast wave crosses the layer and transforms into high fast and slow waves. The nature of fast and slow magnetoacoustic waves is investigated in a finite plasma in the neighbourhood of a two-dimensional null point. The linearised equations are solved in both polar and cartesian forms with a two-step Lax-Wendroff numerical scheme. Analytical work (e.g. small expansion and WKB approximation) also complement the work. It is found that when a finite gas pressure is included in magnetic equilibrium containing an X-type null point, a fast wave is attracted towards the null by a refraction effect and that a slow wave is generated as the wave crosses the layer. Current accumulation occurs close to the null and along nearby separatrices. The fast wave can now \emph{pass through the origin} due to the non-zero sound speed, an effect not previously seen in related papers but clear seen for larger values of . Some of the energy can now leave the region of the null point and there is again generation of a slow wave component (we find that the fraction of the incident wave converted to a slow wave is proportional to ). We conclude that there are two competing phenomena; the refraction effect (due to the variable Alfvén speed) and the contribution from the non-zero sound speed. These experiments illustrate the importance of the magnetic topology and of the location of the layer in the system.
14 pages, 12 figures, 1 table
References in corpus (2)
Cited by in corpus (23)
- Nonlinear Fast Magnetoacoustic Wave Propagation in the Neighbourhood of a 2D magnetic X-point: Oscillatory Reconnection
- A trilinear method for finding null points in a 3D vector space
- On the Periodicity of Oscillatory Reconnection
- Magnetoacoustic Waves in a Stratified Atmosphere with a Magnetic Null Point
- 3D MHD Coronal Oscillations About a Magnetic Null Point: Application of WKB Theory
- A New Look at Mode Conversion in a Stratified Isothermal Atmosphere
- Oscillatory Reconnection of a 2D X-point in a hot coronal plasma
- Linear and nonlinear MHD mode coupling of the fast magnetoacoustic wave about a 3D magnetic null point
- Three-dimensional MHD wave propagation near a coronal null point: a new wave mode decomposition approach
- Coronal Alfven speeds in an isothermal atmosphere I. Global properties
- Oscillatory reconnection as a plasma diagnostic in the solar corona
- Direct Imaging of Magnetohydrodynamic Wave Mode Conversion Near a 3D Null Point on the Sun
- Is Magnetic Topology Important for Heating the Solar Atmosphere?
- The formation and dissipation of current sheets and shocks due to compressive waves in a stratified atmosphere containing a magnetic null
- Inferring physical parameters in solar prominence threads
- A Study of a long duration B9 flare-CME event and associated piston-driven shock
- 3D structures of the base of small-scale recurrent jets revealed by Solar orbiter
- MHD waves in homogeneous and continuously stratified atmospheres
- Phase Mixing of Alfvén Waves Near a 2D Magnetic Null Point
- The behaviour of magnetoacoustic waves in the neighbourhood of a two-dimensional null point: initially cylindrically-symmetric perturbations
- 3D WKB solution for fast magnetoacoustic wave behaviour around an X-line
- Fast Magnetoacoustic Wave Behavior within Gravitationally Stratified, Magnetically Inhomogeneous Media
- The independence of oscillatory reconnection periodicity from the initial pulse