Propagation of nonadiabatic magnetoacoustic waves in a threaded prominence with mass flows
arXiv:0809.4765 · doi:10.1088/0004-637X/693/2/1601
Abstract
High resolution observations of solar filaments suggest the presence of groups of prominence threads, i.e. the fine-structures of prominences, which oscillate coherently (in phase). In addition, mass flows along threads have been often observed. Here, we investigate the effect of mass flows on the collective fast and slow nonadiabatic magnetoacoustic wave modes supported by systems of prominence threads. Prominence fine-structures are modeled as parallel, homogeneous and infinite cylinders embedded in a coronal environment. The magnetic field is uniform and parallel to the axis of threads. Configurations of identical and nonidentical threads are both explored. We apply the T-matrix theory of acoustic scattering to obtain the oscillatory frequency and the eigenfunctions of linear magnetosonic disturbances. We find that the existence of wave modes with a collective dynamics, i.e. those that produce significant perturbations in all threads, is only possible when the Doppler-shifted individual frequencies of threads are very similar. This can be only achieved for very particular values of the plasma physical conditions and flow velocities within threads.
Submitted in ApJ
References in corpus (7)
- Transverse oscillations of flowing prominence threads observed with Hinode
- Damping of Fast Magnetohydrodynamic Oscillations in Quiescent Filament Threads
- Non-adiabatic magnetohydrodynamic waves in a cylindrical prominence thread with mass flow
- Transverse oscillations of two coronal loops
- Transverse oscillations of systems of coronal loops
- The effect of the solar corona on the attenuation of small-amplitude prominence oscillations. I. Longitudinal magnetic field
- Flow instabilities of magnetic flux tubes II. Longitudinal flow
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- Waves in Solar Coronal Loops
- Transverse oscillations of a multi-stranded loop
- Damping mechanisms for oscillations in solar prominences
- The spatial damping of magnetohydrodynamic waves in a flowing partially ionised prominence plasma
- Time evolution of plasma parameters during the rise of a prominence instability
- Inferring physical parameters in solar prominence threads
- Damped transverse oscillations of interacting coronal loops
- The effect of linear background rotational flows on magnetoacoustic modes of a photospheric magnetic flux tube
- Fundamental Transverse Vibrations of the Active Region Solar Corona