Context: .The evolution of the concentrated magnetic field in flux tubes is one challenge of the nowadays Solar physics which requires time sequence with high spatial resolution. Aims: .Our objective is to follow the properties of the magnetic concentrations during their life, in intensity (continuum and line core), magnetic field and Doppler velocity. Methods: .We have observed solar region NOAA 0644 on 2004 July 15 at Pic du Midi observatory with the Multichannel Subtractive Double Pass (MSDP) operating mode and analysed the circular polarization of the Na D1 589.6 nm spectral line in terms of longitudinal magnetic field in 2D field of view (5.6 arcsec× 80 arcsec), during 41 mn at two altitudes 327 km and 170 km in the photosphere. Result...
Context. Solar pores are intermediate-size magnetic flux features that emerge at the surface of the ...
We studied the radiative properties of small magnetic elements (active region faculae and the networ...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...
Context.The evolution of the concentrated magnetic field in flux tubes is one challenge of the nowa...
We present an analysis of longitudinal magnetic field measurements using the spectral data obtained ...
Abstract: The almost stately evolution of the global heliospheric magnetic field pattern during most...
Context. The Sun’s magnetic fields play an important role in various solar phenomena. Solar pores ar...
International audienceAims:We use spectro-polarimetric THEMIS/MSDP data to investigate the 3D struct...
Context. The line-of-sight (LOS) component of the large-scale photospheric magnetic field has been o...
Context. Weak magnetic field elements make a dominant contribution to the total magnetic field on th...
Abstract Context: The line-of-sight (LOS) component of the large-scale photospheric magnetic field ...
Abstract. At the solar surface the magnetic field is bundled into discrete elements of concentrated ...
International audienceContext: The magnetic topology of the solar photosphere in its quietest region...
Abstract I have made a detailed study of the fundamental properties of the solar photospheric magne...
Plage regions are patches of concentrated magnetic field in the Sun’s atmosphere where hot coronal l...
Context. Solar pores are intermediate-size magnetic flux features that emerge at the surface of the ...
We studied the radiative properties of small magnetic elements (active region faculae and the networ...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...
Context.The evolution of the concentrated magnetic field in flux tubes is one challenge of the nowa...
We present an analysis of longitudinal magnetic field measurements using the spectral data obtained ...
Abstract: The almost stately evolution of the global heliospheric magnetic field pattern during most...
Context. The Sun’s magnetic fields play an important role in various solar phenomena. Solar pores ar...
International audienceAims:We use spectro-polarimetric THEMIS/MSDP data to investigate the 3D struct...
Context. The line-of-sight (LOS) component of the large-scale photospheric magnetic field has been o...
Context. Weak magnetic field elements make a dominant contribution to the total magnetic field on th...
Abstract Context: The line-of-sight (LOS) component of the large-scale photospheric magnetic field ...
Abstract. At the solar surface the magnetic field is bundled into discrete elements of concentrated ...
International audienceContext: The magnetic topology of the solar photosphere in its quietest region...
Abstract I have made a detailed study of the fundamental properties of the solar photospheric magne...
Plage regions are patches of concentrated magnetic field in the Sun’s atmosphere where hot coronal l...
Context. Solar pores are intermediate-size magnetic flux features that emerge at the surface of the ...
We studied the radiative properties of small magnetic elements (active region faculae and the networ...
Context. Small-scale magnetic features are present everywhere in the solar photosphere. Theoretical ...