Aims. We use 3D non-linear force-free magnetic field modeling of prominence/filament magnetic fields to develop the first 2D models of individual prominence fine structures based on the 3D configuration of the magnetic field of the whole prominence. Methods. We use an iterative technique to fill the magnetic dips produced by the 3D modeling with realistic prominence plasma in hydrostatic equilibrium and with a temperature structure that contains the prominence-corona transition region. With this well-defined plasma structure the radiative transfer can be treated in detail in 2D and the resulting synthetic emission can be compared with prominence/filament observations. Results. Newly developed non-linear force-free magnetic d...
P.H. acknowledges the support from grant 209/12/0906 of the Grant Agency of the Czech Republic. S.G....
Aims. This study is the first attempt to combine the prominence observations in Lyman, UV,...
Aims. Prominences observed by Hinode show very dynamical and intriguing structures. To und...
Aims. We use 3D non-linear force-free magnetic field modeling of prominence/filament magnetic fields...
We present the first 3D whole-prominence fine structure model. The model combines a 3D magnetic fiel...
We present the first 3D whole-prominence fine structure model. The model combines a 3D magnetic fiel...
Aims. The aim of this work is to analyse the multi-instrument observations of the June 22, 2010 prom...
Aims. We analyze distributions of the magnetic field strength and prominence plasma (temperature, pr...
Aims. We analyze distributions of the magnetic field strength and prominence plasma (temperature, pr...
In this paper we construct theoretical models for vertical prominence threads which are in magnetohy...
In this paper we construct theoretical models for vertical prominence threads which are in magnetoh...
We use the new three-dimensional (3D) whole-prominence fine structure model to study the evolution o...
We construct a grid of 2D vertical-thread models for prominence fine structures which are in magnet...
Aims. We perform a detailed statistical analysis of the spectral Lyman-line observations of the quie...
International audience Aims: Prominences observed by Hinode show very dynamical and intriguing struc...
P.H. acknowledges the support from grant 209/12/0906 of the Grant Agency of the Czech Republic. S.G....
Aims. This study is the first attempt to combine the prominence observations in Lyman, UV,...
Aims. Prominences observed by Hinode show very dynamical and intriguing structures. To und...
Aims. We use 3D non-linear force-free magnetic field modeling of prominence/filament magnetic fields...
We present the first 3D whole-prominence fine structure model. The model combines a 3D magnetic fiel...
We present the first 3D whole-prominence fine structure model. The model combines a 3D magnetic fiel...
Aims. The aim of this work is to analyse the multi-instrument observations of the June 22, 2010 prom...
Aims. We analyze distributions of the magnetic field strength and prominence plasma (temperature, pr...
Aims. We analyze distributions of the magnetic field strength and prominence plasma (temperature, pr...
In this paper we construct theoretical models for vertical prominence threads which are in magnetohy...
In this paper we construct theoretical models for vertical prominence threads which are in magnetoh...
We use the new three-dimensional (3D) whole-prominence fine structure model to study the evolution o...
We construct a grid of 2D vertical-thread models for prominence fine structures which are in magnet...
Aims. We perform a detailed statistical analysis of the spectral Lyman-line observations of the quie...
International audience Aims: Prominences observed by Hinode show very dynamical and intriguing struc...
P.H. acknowledges the support from grant 209/12/0906 of the Grant Agency of the Czech Republic. S.G....
Aims. This study is the first attempt to combine the prominence observations in Lyman, UV,...
Aims. Prominences observed by Hinode show very dynamical and intriguing structures. To und...