Context. The determination of the underlying mechanisms of the magnetic elements diffusion over the solar surface is still a challenge. Understanding the formation and evolution of the solar network (NE) is a challenge, because it provides a magnetic flux over the solar surface comparable to the flux of active regions at solar maximum. Aims. We investigate the structure and evolution of interior cells of solar supergranulation. From Hinode observations, we explore the motions on solar surface at high spatial and temporal resolution. We derive the main organization of the flows inside supergranules and their effect on the magnetic elements. Methods. To probe the superganule interior cell, we used the trees of fragmenting gr...
<p>We present an investigation of the large-scale flows that influence magnetic fields at the solar ...
Small scale magnetic fields (magnetic elements) are ubiquitous in the solar photosphere. Their inter...
Context. Supergranulation is a pattern of the velocity field at the surface of the Sun, which has be...
International audienceContext: The origin of supergranulation has not been understood yet. Contradic...
International audienceContext: Aims: The interactions of velocity scales on the Sun's surface, from ...
Context. Studying the motions on the solar surface is fundamental for understanding how turbulent co...
Context. Studying the motions on the solar surface is fundamental for understanding how turbulent co...
Context. Solar supergranulation presents us with many mysteries. For example, previous studies in sp...
The analysis of a solar granulation 3-h time sequence obtained at the Pic du Midi Observatory conf...
International audienceThe analysis of a solar granulation 3-h time sequence obtained at the Pic du M...
The study of spatial and temporal scales on which small magnetic structures (magnetic elements) are ...
The large-scale magnetic pattern observed in the photosphere of the quiet Sun is dominated by the ma...
Context. Photospheric vortex flows are thought to play a key role in the evolution of magnetic field...
<p>We present an investigation of the large-scale flows that influence magnetic fields at the solar ...
Small scale magnetic fields (magnetic elements) are ubiquitous in the solar photosphere. Their inter...
Context. Supergranulation is a pattern of the velocity field at the surface of the Sun, which has be...
International audienceContext: The origin of supergranulation has not been understood yet. Contradic...
International audienceContext: Aims: The interactions of velocity scales on the Sun's surface, from ...
Context. Studying the motions on the solar surface is fundamental for understanding how turbulent co...
Context. Studying the motions on the solar surface is fundamental for understanding how turbulent co...
Context. Solar supergranulation presents us with many mysteries. For example, previous studies in sp...
The analysis of a solar granulation 3-h time sequence obtained at the Pic du Midi Observatory conf...
International audienceThe analysis of a solar granulation 3-h time sequence obtained at the Pic du M...
The study of spatial and temporal scales on which small magnetic structures (magnetic elements) are ...
The large-scale magnetic pattern observed in the photosphere of the quiet Sun is dominated by the ma...
Context. Photospheric vortex flows are thought to play a key role in the evolution of magnetic field...
<p>We present an investigation of the large-scale flows that influence magnetic fields at the solar ...
Small scale magnetic fields (magnetic elements) are ubiquitous in the solar photosphere. Their inter...
Context. Supergranulation is a pattern of the velocity field at the surface of the Sun, which has be...