Small magnetic structures can be seen in G-band filtergrams as isolated bright points, strings of bright points and dark micro-pores. At a resolution of 0$\farcs$1, new forms of magnetic structures are found in strong field areas: elongated “ribbons” and more circular “flowers”. In this paper we study the temporal evolution of these small scale magnetic structures. In strong-field regions the time-evolution is more that of a magnetic fluid than that of collections of flux-tubes that keep their identity. We find that the granular flow concentrates the magnetic field into flux sheets that are visible as thin bright features in the filtergrams. Weak upflows are found in the flux sheets and downflows in the immediate surroundings. The flux sh...
The large-scale magnetic pattern observed in the photosphere of the quiet Sun is dominated by the ma...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...
The origin of the 22-year solar magnetic cycle lies below the photosphere where multiscale plasma mo...
Small magnetic structures can be seen in G-band filtergrams as isolated bright points, strings of br...
We report on the dynamics of the small-scale solar magnetic field, based on analysis of very high re...
Small bipolar magnetic features are observed to appear in the interior of individual granules in the...
We track small magnetic structures on very quiet regions (internetwork) of the Sun. We follow the fo...
This thesis presents a study of quiet-Sun magnetic features in the solar photosphere. Magnetic field...
Abstract: The almost stately evolution of the global heliospheric magnetic field pattern during most...
The Sun is a non-equilibrium, dissipative system subject to an energy flow that originates in its co...
The interaction of magnetic fields and convection is investigated in the context of the coronal heat...
New observations of solar magnetic elements in a remnant active region plage near disk center are pr...
The Sun is a non-equilibrium, dissipative system subject to an energy flow that originates in its co...
Context. Although the flow of material in sunspot superpenumbrae has been studied intensively, detai...
The large-scale magnetic pattern observed in the photosphere of the quiet Sun is dominated by the ma...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...
The origin of the 22-year solar magnetic cycle lies below the photosphere where multiscale plasma mo...
Small magnetic structures can be seen in G-band filtergrams as isolated bright points, strings of br...
We report on the dynamics of the small-scale solar magnetic field, based on analysis of very high re...
Small bipolar magnetic features are observed to appear in the interior of individual granules in the...
We track small magnetic structures on very quiet regions (internetwork) of the Sun. We follow the fo...
This thesis presents a study of quiet-Sun magnetic features in the solar photosphere. Magnetic field...
Abstract: The almost stately evolution of the global heliospheric magnetic field pattern during most...
The Sun is a non-equilibrium, dissipative system subject to an energy flow that originates in its co...
The interaction of magnetic fields and convection is investigated in the context of the coronal heat...
New observations of solar magnetic elements in a remnant active region plage near disk center are pr...
The Sun is a non-equilibrium, dissipative system subject to an energy flow that originates in its co...
Context. Although the flow of material in sunspot superpenumbrae has been studied intensively, detai...
The large-scale magnetic pattern observed in the photosphere of the quiet Sun is dominated by the ma...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...
The origin of the 22-year solar magnetic cycle lies below the photosphere where multiscale plasma mo...