Context Frequent observations of quasi-periodic rapidly-propagating wave trains in coronal structures have been made in the last decade. The dispersive evolution of fast magnetohydrodynamic waves propagating in coronal waveguides can provide a physical interpretation for many of these observations. Aims Previous studies have considered the generation of fast wave trains by impulsive drivers which deposit energy instantaneously. The signatures of dispersively formed wave trains must depend on the temporal nature of the driver. We investigate the effect of varying the temporal width of the driving perturbation. Methods 2D magnetohydrodynamic numerical simulations of impulsively generated wave trains in a guiding field-aligne...
Fast magnetoacoustic wave is an important tool for inferring solar atmospheric parameters. We numeri...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
The propagation of fast magnetoacoustic waves in a randomly structured solar corona is considered in...
Context. Frequent observations of quasi-periodic rapidly-propagating wave trains in coronal structur...
Quasi-periodic rapidly propagating wave trains are frequently observed in extreme ultraviolet observ...
Rapidly propagating fast magnetoacoustic wave trains guided by field-aligned plasma non-uniformities...
Context. Rapidly propagating coronal EUV disturbances recently discovered in the solar cor...
Context. Fast magneto-acoustic waves are highly dispersive in waveguides, so they can gene...
Fast magnetoacoustic waves guided along the magnetic field by plasma non-uniformities, in particular...
Context. We present a new event of quasi-periodic wave trains observed in EUV wavebands th...
Rapid oscillations in the corona are discussed from a theoretical standpoint, developing some previo...
The possibility of remote diagnostics of coronal structures with impulsively-generated short-period ...
Impulsively generated short-period fast magneto-acoustic wave trains, guided by solar and stellar co...
A description is provided of how fast magnetoacoustic waves are ducted along regions of low Alfven v...
Magnetohydrodynamic waves interact with structured plasmas and reveal the internal magnetic and ther...
Fast magnetoacoustic wave is an important tool for inferring solar atmospheric parameters. We numeri...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
The propagation of fast magnetoacoustic waves in a randomly structured solar corona is considered in...
Context. Frequent observations of quasi-periodic rapidly-propagating wave trains in coronal structur...
Quasi-periodic rapidly propagating wave trains are frequently observed in extreme ultraviolet observ...
Rapidly propagating fast magnetoacoustic wave trains guided by field-aligned plasma non-uniformities...
Context. Rapidly propagating coronal EUV disturbances recently discovered in the solar cor...
Context. Fast magneto-acoustic waves are highly dispersive in waveguides, so they can gene...
Fast magnetoacoustic waves guided along the magnetic field by plasma non-uniformities, in particular...
Context. We present a new event of quasi-periodic wave trains observed in EUV wavebands th...
Rapid oscillations in the corona are discussed from a theoretical standpoint, developing some previo...
The possibility of remote diagnostics of coronal structures with impulsively-generated short-period ...
Impulsively generated short-period fast magneto-acoustic wave trains, guided by solar and stellar co...
A description is provided of how fast magnetoacoustic waves are ducted along regions of low Alfven v...
Magnetohydrodynamic waves interact with structured plasmas and reveal the internal magnetic and ther...
Fast magnetoacoustic wave is an important tool for inferring solar atmospheric parameters. We numeri...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
The propagation of fast magnetoacoustic waves in a randomly structured solar corona is considered in...