A three-dimensional numerical experiment of the launching of a hot and fast coronal jet followed by several violent eruptions is analyzed in detail. These events are initiated through the emergence of a magnetic flux rope from the solar interior into a coronal hole. We explore the evolution of the emerging magnetically-dominated plasma dome surmounted by a current sheet and the ensuing pattern of reconnection. A hot and fast coronal jet with inverted-Y shape is produced that shows properties comparable to those frequently observed with EUV and X-Ray detectors. We analyze its 3D shape, its inhomogeneous internal structure, and its rise and decay phases, lasting for some 15-20 min each. Particular attention is devoted to the field-line connec...
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class ...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We have simulated the three-dimensional (3D) emergence and interaction of two twisted flux tubes, wh...
We report on three-dimensional (3D) magnetohydrodynamic (MHD) simulations of recurrent eruptions in ...
Solar filaments are magnetic structures often observed in the solar atmosphere and consist of plasma...
We report on three-dimensional (3D) MHD simulations of recurrent mini CME-like eruptions in a small ...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
A highly important aspect of solar activity is the coupling between eruptions and the surrounding co...
Aims. We model the emergence of magnetized plasma from the top of the convection zone to the lower c...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
We present the results of a set of three-dimensional numerical simulations of magnetic flux emergenc...
We present the results of a set of three-dimensional numerical simulations of magnetic flux emergenc...
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class ...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
We have simulated the three-dimensional (3D) emergence and interaction of two twisted flux tubes, wh...
We report on three-dimensional (3D) magnetohydrodynamic (MHD) simulations of recurrent eruptions in ...
Solar filaments are magnetic structures often observed in the solar atmosphere and consist of plasma...
We report on three-dimensional (3D) MHD simulations of recurrent mini CME-like eruptions in a small ...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
A highly important aspect of solar activity is the coupling between eruptions and the surrounding co...
Aims. We model the emergence of magnetized plasma from the top of the convection zone to the lower c...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
We present the results of a set of three-dimensional numerical simulations of magnetic flux emergenc...
We present the results of a set of three-dimensional numerical simulations of magnetic flux emergenc...
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class ...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...