Observational evidence for two-component distributions describing solar magnetic bright points
G. Berrios Saavedra, D. Utz, S. Vargas Dominguez, J. I. Campos Rozo,, S. J. Gonz\'alez Manrique, P. G\"om\"ory, C. Kuckein, H. Balthasar, P., Zelina

TL;DR
This study analyzes the size and velocity distributions of solar magnetic bright points, revealing they follow two-component distributions, indicating two distinct populations related to different magnetic flux regions in the solar photosphere.
Contribution
It provides the first detailed statistical characterization of MBP size and velocity distributions, demonstrating a two-component model across different datasets and resolutions.
Findings
MBP areas and diameters follow log-normal distributions with two components.
MBP velocity components follow Gaussian distributions, and magnitudes follow Rayleigh distributions.
Two populations of MBPs are identified, linked to different magnetic flux regions.
Abstract
Context. High-resolution observations of the solar photosphere reveal the presence of fine structures, in particular the so-called magnetic bright points (MBPs), which are small-scale features associated with strong magnetic field regions of the order of kilogauss (kG). It is especially relevant to study these magnetic elements, which are extensively detected at all moments of the solar cycle, in order to establish their contribution to the behaviour of the solar atmosphere, and ultimately a plausible role within the coronal heating problem. Aims. We aim to characterise the size and velocity distributions of MBPs in the solar photosphere in two different datasets of quiet Sun images acquired with the Solar Optical Telescope SOT/Hinode and the High-resolution Fast Imager HiFI/GREGOR, in the G-band (4308 angstroms). Methods. In order to detect the MBPs, an automatic segmentation and…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Stellar, planetary, and galactic studies · Astro and Planetary Science
