We studied the radiative properties of small magnetic elements (active region faculae and the network) during the rising phase of solar cycle 23 from 1996 to 2001, determining their contrasts as a function of heliocentric angle, magnetogram signal, and the solar cycle phase. We combined near-simultaneous full disk images of the line-of-sight magnetic field and photospheric continuum intensity provided by the MDI instrument on board the SOHO spacecraft. Sorting the magnetogram signal into different ranges allowed us to distinguish between the contrast of different magnetic structures. We find that the contrast center-to-limb variation (CLV) of these small magnetic elements is independent of time with a 10% precision, when measured during the...
Context. The bright regions in the solar chromosphere and temperature minimum have a good spatial co...
Context. The brightness of faculae and network depends on the angle at which they are observed and t...
Context. The contribution of quiet-Sun regions to the solar irradiance variability is currently uncl...
We studied the radiative properties of small magnetic elements (active region faculae and the networ...
Sunspots, faculae and the magnetic network contribute to solar irradiance variations. The contributi...
Aims. This study aims at setting observational constraints on the continuum and line core ...
The aim of this thesis is the study of the total and spectral solar irradiance variability induced b...
Solar irradiance variations over solar rotational timescales are largely determined by the passage o...
Context. Small-scale magnetic fields are major contributors to the solar irradiance variations. Henc...
Context. Changes in the solar surface area, which is covered by small-scale magnetic elements, are t...
Aims. We aim to gain insight into the effect of network and faculae on solar irradiance from their a...
Abstract Context: The bright regions in the solar chromosphere and temperature minimum have a good ...
Magnetic elements have an intensity contrast that depends on the type of region they are located in ...
In this thesis I investigate the photometric and geometric properties of bright magnetic features in...
Aims. We compare the properties of kG magnetic structures in the solar network and in active region ...
Context. The bright regions in the solar chromosphere and temperature minimum have a good spatial co...
Context. The brightness of faculae and network depends on the angle at which they are observed and t...
Context. The contribution of quiet-Sun regions to the solar irradiance variability is currently uncl...
We studied the radiative properties of small magnetic elements (active region faculae and the networ...
Sunspots, faculae and the magnetic network contribute to solar irradiance variations. The contributi...
Aims. This study aims at setting observational constraints on the continuum and line core ...
The aim of this thesis is the study of the total and spectral solar irradiance variability induced b...
Solar irradiance variations over solar rotational timescales are largely determined by the passage o...
Context. Small-scale magnetic fields are major contributors to the solar irradiance variations. Henc...
Context. Changes in the solar surface area, which is covered by small-scale magnetic elements, are t...
Aims. We aim to gain insight into the effect of network and faculae on solar irradiance from their a...
Abstract Context: The bright regions in the solar chromosphere and temperature minimum have a good ...
Magnetic elements have an intensity contrast that depends on the type of region they are located in ...
In this thesis I investigate the photometric and geometric properties of bright magnetic features in...
Aims. We compare the properties of kG magnetic structures in the solar network and in active region ...
Context. The bright regions in the solar chromosphere and temperature minimum have a good spatial co...
Context. The brightness of faculae and network depends on the angle at which they are observed and t...
Context. The contribution of quiet-Sun regions to the solar irradiance variability is currently uncl...