Using numerical simulations, we study the effects of magnetic resistivity and thermal conductivity in the dynamics and properties of solar jets with characteristics of Type II spicules and cool coronal jets. The dynamic evolution of the jets is governed by the resistive MHD equations with thermal conduction along the magnetic field lines on a 2.5D slice. The magnetic field configuration consists of two symmetric neighboring loops with opposite polarity, used to support reconnection and followed by the plasma jet formation. In total, 10 simulations were carried out with different values of resistivity and thermal conductivity that produce jets with different morphological and thermal properties we quantify. We find that an increase in magnet...
This thesis aims to increase our understanding of solar spicular jets. We carry out a series of nume...
Chromospheric and coronal jets represent important manifestations of ubiquitous solar transients, wh...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
Using simulated data-driven three-dimensional resistive MHD simulations of the solar atmosphere, we ...
Using numerical simulations, we show that jets with features of type II spicules and cool coronal je...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
We report a series of numerical experiments for the propagation of a momentum pulse representing a c...
We measure the effects of non-isotropic thermal conduction on generation of solar chromospheric jets...
In this paper, we study the possible influence of a magnetic narrow region on the propagation of jet...
Understanding the fine structures and transient phenomena associated with the origins of the fast so...
The solar chromospheric jet is one of the most characteristic structures near the solar surface. The...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
Within the framework of resistive MHD, implementing the C7 equilibrium atmosphere model and a 3D pot...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
This thesis aims to increase our understanding of solar spicular jets. We carry out a series of nume...
Chromospheric and coronal jets represent important manifestations of ubiquitous solar transients, wh...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
Using simulated data-driven three-dimensional resistive MHD simulations of the solar atmosphere, we ...
Using numerical simulations, we show that jets with features of type II spicules and cool coronal je...
Using simulated data-driven, 3D resistive MHD simulations of the solar atmosphere, we show that 3D m...
We report a series of numerical experiments for the propagation of a momentum pulse representing a c...
We measure the effects of non-isotropic thermal conduction on generation of solar chromospheric jets...
In this paper, we study the possible influence of a magnetic narrow region on the propagation of jet...
Understanding the fine structures and transient phenomena associated with the origins of the fast so...
The solar chromospheric jet is one of the most characteristic structures near the solar surface. The...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
Within the framework of resistive MHD, implementing the C7 equilibrium atmosphere model and a 3D pot...
We report on three-dimensional (3D) MHD simulations of the formation of jets produced during the eme...
This thesis aims to increase our understanding of solar spicular jets. We carry out a series of nume...
Chromospheric and coronal jets represent important manifestations of ubiquitous solar transients, wh...
Context. Jets are dynamic, impulsive, well-collimated plasma events that develop at many different s...