Axisymmetric Modes in Magnetic Flux Tubes with Internal and External Magnetic Twist
arXiv:1706.09669 · doi:10.1088/0004-637X/810/1/53
Abstract
Observations suggest that twisted magnetic flux tubes are ubiquitous in the Sun's atmosphere. The main aim of this work is to advance the study of axisymmetric modes of magnetic flux tubes by modeling both twisted internal and external magnetic field, when the magnetic twist is weak. In this work, we solve the derived wave equations numerically assuming twist outside the tube is inversely proportional to the distance from its boundary. We also study the case of constant magnetic twist outside the tube and solve these equations analytically. We show that the solution for a constant twist outside the tube is a good approximation to the case where the magnetic twist is proportional to , namely the error is in all cases less than .The solution is in excellent agreement with solutions to simpler models of twisted magnetic flux tubes, i.e. without external magnetic twist. It is shown that axisymmetric Alfvén waves are naturally coupled with magnetic twist as the azimuthal component of the velocity perturbation is nonzero. We compared our theoretical results with observations and comment on what the Doppler signature of these modes is expected to be. Lastly, we argue that the character of axisymmetric waves in twisted magnetic flux tubes can lead to false positives in identifying observations with axisymmetric Alfvén waves.
References in corpus (4)
- Ideal kink instability of a magnetic loop equilibrium
- Alfven Waves in the Lower Solar Atmosphere
- Improvements to stellar structure models, based on a grid of 3D convection simulations. II. Calibrating the mixing-length formulation
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Cited by in corpus (7)
- Magnetohydrodynamic Fast Sausage Waves in the Solar Corona
- Resonant Absorption of Axisymmetric Modes in Twisted Magnetic Flux Tubes
- Chromospheric and Coronal Wave Generation in a Magnetic Flux Sheath
- Small-scale solar jet formation and their associated waves and instabilities
- Incompressible MHD modes in the thin magnetically twisted flux tube
- Transition to turbulence in nonuniform coronal loops driven by torsional Alfvén waves. II. Extended analysis and effect of magnetic twist
- The Effect of Flow and Magnetic Twist on Resonant Absorption of Slow MHD Waves in Magnetic Flux Tubes