Non-magnetic photospheric bright points in 3D simulations of the solar atmosphere
Flavio Calvo (1, 2), Oskar Steiner (1, 3), Bernd Freytag (4), ((1) Istituto Ricerche Solari Locarno (IRSOL), (2) Geneva Observatory,, University of Geneva, (3) Kiepenheuer-Institut f\"ur Sonnenphysik, (4), Division of Astronomy, Space Physics, Department of Physics, Astronomy,

TL;DR
This paper reports the discovery of a new class of non-magnetic bright points in the solar photosphere, identified through 3D simulations, which are caused by vortex-induced pressure gradients and require high-resolution telescopes for observation.
Contribution
The study introduces non-magnetic bright points as a new phenomenon in solar physics, supported by simulations and a detection algorithm, expanding understanding of small-scale solar features.
Findings
Non-magnetic bright points have ~20% intensity contrast.
They are 60-80 km in size.
Detection requires 4-m-class telescopes.
Abstract
Context. Small-scale bright features in the photosphere of the Sun, such as faculae or G-band bright points, appear in connection with small-scale magnetic flux concentrations. Aims. Here we report on a new class of photospheric bright points that are free of magnetic fields. So far, these are visible in numerical simulations only. We explore conditions required for their observational detection. Methods. Numerical radiation (magneto-)hydrodynamic simulations of the near-surface layers of the Sun were carried out. The magnetic field-free simulations show tiny bright points, reminiscent of magnetic bright points, only smaller. A simple toy model for these non-magnetic bright points (nMBPs) was established that serves as a base for the development of an algorithm for their automatic detection. Basic physical properties of 357 detected nMBPs were extracted and statistically evaluated.…
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