Secondary fast magnetoacoustic waves trapped in randomly structured plasmas
arXiv:1606.06059 · doi:10.3847/0004-637X/828/1/17
Abstract
Fast magnetoacoustic wave is an important tool for inferring solar atmospheric parameters. We numerically simulate the propagation of fast wave pulses in randomly structured plasmas mimicking the highly inhomogeneous solar corona. A network of secondary waves is formed by a series of partial reflections and transmissions. These secondary waves exhibit quasi-periodicities in both time and space. Since the temporal and spatial periods are related simply through the fast wave speed, we quantify the properties of secondary waves by examining the dependence of the average temporal period () on the initial pulse width () as well as the density contrast () and correlation length () that characterize the randomness of the equilibrium density profiles. For small-amplitude pulses, does not alter significantly. Large-amplitude pulses, on the other hand, enhance the density contrast when is small but have a smoothing effect when is sufficiently large. We found that scales linearly with and that the scaling factor is larger for a narrower pulse. However, in terms of the absolute values of , broader pulses generate secondary waves with longer periods, and this effect is stronger in random plasmas with shorter correlation lengths. Secondary waves carry the signatures of both the leading wave pulse and background plasma, our study may find applications in MHD seismology by exploiting the secondary waves detected in the dimming regions after CMEs or EUV waves.
10 pages, 5 figures, accepted by ApJ
References in corpus (9)
- MPI-AMRVAC for Solar and Astrophysics
- Advances in Observing Various Coronal EUV Waves in the SDO Era and Their Seismological Applications (Invited Review)
- Multi-height observations of magnetoacoustic cut-off frequency in a sunspot atmosphere
- Diffraction, Refraction, and Reflection of An Extreme-Ultraviolet Wave Observed during Its Interactions with Remote Active Regions
- Oscillations in a sunspot with light bridges
- Peculiar Stationary EUV Wave Fronts in the eruption on 2011 May 11
- Evolution of fast magnetoacoustic pulses in randomly structured coronal plasmas
- Stochastic transients as a source of quasi-periodic processes in the solar atmosphere
- Prominence Activation by Coronal Fast Mode Shock
Cited by in corpus (8)
- Classification of extremely metal-poor stars: absent region in A(C)-[Fe/H] plane and the role of dust cooling
- On a small-scale EUV wave: the driving mechanism and the associated oscillating filament
- Coronal Quasi-periodic Fast-mode Propagating Wave Trains
- A Statistical Study of Short-period Decayless Oscillations of Coronal Loops in an Active Region
- Two Quasi-periodic Fast-propagating Magnetosonic Wave Events Observed In Active Region NOAA 11167
- Magnetohydrodynamic waves in braided magnetic fields
- An extreme ultraviolet wave generating upward secondary waves in a streamer-like solar structure
- A Study of a long duration B9 flare-CME event and associated piston-driven shock