Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/5598
Title: Stokes Diagnostics of Magneto-Acoustic Wave Propagation in the Magnetic Network on the Sun
Authors: Vigeesh, G
Steiner, O
Hasan, S. S
Keywords: Magnetic fields
Photosphere – Magnetic fields
Models – Magnetohydrodynamics – Polarisation
Optical – Spectral line
Intensity and diagnostics – Waves
Magnetohydrodynamic – Waves
Issue Date: Oct-2011
Publisher: Springer
Citation: Solar Physics, Vol. 273, No. 1, pp. 15-38
Abstract: The solar atmosphere is magnetically structured and highly dynamic. Owing to the dynamic nature of the regions in which the magnetic structures exist, waves can be excited in them. Numerical investigations of wave propagation in small-scale magnetic flux concentrations in the magnetic network on the Sun have shown that the nature of the excited modes depends on the value of plasma β (the ratio of gas to magnetic pressure) where the driving motion occurs. Considering that these waves should give rise to observable characteristic signatures, we have attempted a study of synthesised emergent spectra from numerical simulations of magneto-acoustic wave propagation. We find that the signatures of wave propagation in a magnetic element can be detected when the spatial resolution is sufficiently high to clearly resolve it, enabling observations in different regions within the flux concentration. The possibility to probe various lines of sight around the flux concentration bears the potential to reveal different modes of the magnetohydrodynamic waves and mode conversion. We highlight the feasibility of using the Stokes-V asymmetries as a diagnostic tool to study the wave propagation within magnetic flux concentrations. These quantities can possibly be compared with existing and new observations in order to place constraints on different wave excitation mechanisms.
Description: Restricted Access
The original publication is available at springerlink.com
URI: http://hdl.handle.net/2248/5598
Appears in Collections:IIAP Publications

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