The study of the dynamic properties of small-scale magnetic fields in the solar photosphere (magnetic elements, MEs) provides a fundamental tool to investigate some still unknown aspects of turbulent convection, and gain information on the spatial and temporal scales of evolution of the magnetic field in the quiet Sun. We track the MEs in a set of magnetogram long-time series acquired by the Hinode mission, and take advantage of a method based on entropy (the diffusion entropy analysis, DEA) to detect their dynamic regime, under the assumption that MEs are passively transported by the photospheric plasma flow. DEA has been proven to perform better than other standard techniques, and for the first time it is successfully used to provide the ...
This thesis presents a study of quiet-Sun magnetic features in the solar photosphere. Magnetic field...
The multiscale dynamics associated with turbulent convection present in physical systems governed by...
Kilogauss-strength magnetic fields are often observed in intergranular lanes at the photosphere in th...
The study of the dynamic properties of small-scale magnetic fields in the solar photosphere (magneti...
The study of the dynamic properties of small-scale magnetic fields in the solar photosphere (magneti...
Context. Turbulent convection efficiently transports energy up to the solar photosphere, but its mul...
The dynamic properties of the quiet Sun photosphere can be investigated by analyzing the pair disper...
The motions of small-scale magnetic flux elements in the solar photosphere can provide some measure ...
The origin of the 22-year solar magnetic cycle lies below the photosphere where multiscale plasma mo...
Context. Small-scale magnetic fields play an important role in the structure and the dynamics of the...
Context. The study of the dynamic properties of small-scale magnetic fields in the quiet photosphere...
On the basis of observations of solar granulation obtained with the New Solar Telescope (NST) of Big...
This thesis presents a study of quiet-Sun magnetic features in the solar photosphere. Magnetic field...
The multiscale dynamics associated with turbulent convection present in physical systems governed by...
Kilogauss-strength magnetic fields are often observed in intergranular lanes at the photosphere in th...
The study of the dynamic properties of small-scale magnetic fields in the solar photosphere (magneti...
The study of the dynamic properties of small-scale magnetic fields in the solar photosphere (magneti...
Context. Turbulent convection efficiently transports energy up to the solar photosphere, but its mul...
The dynamic properties of the quiet Sun photosphere can be investigated by analyzing the pair disper...
The motions of small-scale magnetic flux elements in the solar photosphere can provide some measure ...
The origin of the 22-year solar magnetic cycle lies below the photosphere where multiscale plasma mo...
Context. Small-scale magnetic fields play an important role in the structure and the dynamics of the...
Context. The study of the dynamic properties of small-scale magnetic fields in the quiet photosphere...
On the basis of observations of solar granulation obtained with the New Solar Telescope (NST) of Big...
This thesis presents a study of quiet-Sun magnetic features in the solar photosphere. Magnetic field...
The multiscale dynamics associated with turbulent convection present in physical systems governed by...
Kilogauss-strength magnetic fields are often observed in intergranular lanes at the photosphere in th...