Fast magnetoacoustic waves guided along the magnetic field by plasma non-uniformities, in particular coronal loops, fibrils, and plumes, are known to be highly dispersive, which lead to the formation of quasi-periodic wave trains excited by a broadband impulsive driver, e.g., a solar flare. We investigated the effects of cylindrical geometry on the fast sausage wave train formation. We performed magnetohydrodynamic numerical simulations of fast magnetoacoustic perturbations of a sausage symmetry, propagating from a localized impulsive source along a field-aligned plasma cylinder with a smooth radial profile of the fast speed. The wave trains are found to have pronounced period modulation, with the longer instant period seen in the beginning...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
Aims. To obtain diagnostics tools for solar flare current sheets, we numerically studied impulsively...
Impulsively generated short-period fast magneto-acoustic wave trains, guided by solar and stellar co...
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...
Rapidly propagating fast magnetoacoustic wave trains guided by field-aligned plasma non-uniformities...
The possibility of remote diagnostics of coronal structures with impulsively-generated short-period ...
Context. Frequent observations of quasi-periodic rapidly-propagating wave trains in coronal structur...
The dependence of the period of sausage oscillations of coronal loops on length together with the de...
Context. We present a new event of quasi-periodic wave trains observed in EUV wavebands th...
Quasi-periodic rapidly propagating wave trains are frequently observed in extreme ultraviolet observ...
We investigate the frequency and damping rate of fast axisymmetric waves that are subject to wave le...
Linear sausage oscillations of a cylinder embedded in a plasma with an azimuthal magnetic field, cre...
Rapid oscillations in the corona are discussed from a theoretical standpoint, developing some previo...
International audienceAims. We aim to study the presence of superoscillations in coronal magnetoacou...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
Aims. To obtain diagnostics tools for solar flare current sheets, we numerically studied impulsively...
Impulsively generated short-period fast magneto-acoustic wave trains, guided by solar and stellar co...
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...
Rapidly propagating fast magnetoacoustic wave trains guided by field-aligned plasma non-uniformities...
The possibility of remote diagnostics of coronal structures with impulsively-generated short-period ...
Context. Frequent observations of quasi-periodic rapidly-propagating wave trains in coronal structur...
The dependence of the period of sausage oscillations of coronal loops on length together with the de...
Context. We present a new event of quasi-periodic wave trains observed in EUV wavebands th...
Quasi-periodic rapidly propagating wave trains are frequently observed in extreme ultraviolet observ...
We investigate the frequency and damping rate of fast axisymmetric waves that are subject to wave le...
Linear sausage oscillations of a cylinder embedded in a plasma with an azimuthal magnetic field, cre...
Rapid oscillations in the corona are discussed from a theoretical standpoint, developing some previo...
International audienceAims. We aim to study the presence of superoscillations in coronal magnetoacou...
© 2015. The American Astronomical Society. All rights reserved. We investigate the evolution of fast...
Aims. To obtain diagnostics tools for solar flare current sheets, we numerically studied impulsively...
Impulsively generated short-period fast magneto-acoustic wave trains, guided by solar and stellar co...