Vortices on the photosphere are fundamentally important as these coherent flows have the potential to form coherent magnetic field structures in the solar atmosphere, e.g., twisted magnetic flux tubes. These flows have traditionally been identified by tracking magnetic bright points (BPs) using primarily visual inspection. This approach has the shortcoming that it introduces bias into the statistical analyses. In this work we fully automate the process of vortex identification using an established method from hydrodynamics for the study of eddies in turbulent flows. For the first time, we apply this to detect intergranular photospheric intensity vortices. Using this automated approach, we find that the expected lifetime of intensity vortice...
Vortex flows, related to solar convective turbulent dynamics at granular scales and their interplay ...
Vortex flows in the solar atmosphere may contribute significantly to the energy flux requirements fo...
Context. Velocity or intensity swirls have now been shown to be widely present throughout the photos...
In this work, a state-of-the-art vortex detection method, Instantaneous Vorticity Deviation, is appl...
The solar atmosphere presents a wealth of dynamics due to a constant interplay between the plasma fl...
Context. Vortex flows have been extensively observed over a wide range of spatial and temporal scale...
Aims. We study vortex dynamics in the solar atmosphere by employing and deriving the analytical evol...
Solar “magnetic tornadoes” are produced by rotating magnetic field structures that extend from the u...
Aims. We study vortex dynamics in the solar atmosphere by employing and deriving the analytical evol...
Solar “magnetic tornadoes” are produced by rotating magnetic field structures that extend from the u...
Context. Vortex flows have been extensively observed over a wide range of spatial and temporal scale...
The majority of studies on multi-scale vortex motions employ a two-dimensional geometry by using a v...
Context. Vortex flows exist across a broad range of spatial and temporal scales in the solar atmosph...
Vortex flows, related to solar convective turbulent dynamics at granular scales and their interplay ...
Context. Vortex flows exist across a broad range of spatial and temporal scales in the solar atmosph...
Vortex flows, related to solar convective turbulent dynamics at granular scales and their interplay ...
Vortex flows in the solar atmosphere may contribute significantly to the energy flux requirements fo...
Context. Velocity or intensity swirls have now been shown to be widely present throughout the photos...
In this work, a state-of-the-art vortex detection method, Instantaneous Vorticity Deviation, is appl...
The solar atmosphere presents a wealth of dynamics due to a constant interplay between the plasma fl...
Context. Vortex flows have been extensively observed over a wide range of spatial and temporal scale...
Aims. We study vortex dynamics in the solar atmosphere by employing and deriving the analytical evol...
Solar “magnetic tornadoes” are produced by rotating magnetic field structures that extend from the u...
Aims. We study vortex dynamics in the solar atmosphere by employing and deriving the analytical evol...
Solar “magnetic tornadoes” are produced by rotating magnetic field structures that extend from the u...
Context. Vortex flows have been extensively observed over a wide range of spatial and temporal scale...
The majority of studies on multi-scale vortex motions employ a two-dimensional geometry by using a v...
Context. Vortex flows exist across a broad range of spatial and temporal scales in the solar atmosph...
Vortex flows, related to solar convective turbulent dynamics at granular scales and their interplay ...
Context. Vortex flows exist across a broad range of spatial and temporal scales in the solar atmosph...
Vortex flows, related to solar convective turbulent dynamics at granular scales and their interplay ...
Vortex flows in the solar atmosphere may contribute significantly to the energy flux requirements fo...
Context. Velocity or intensity swirls have now been shown to be widely present throughout the photos...