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March 6, 2026The Astrophysical Journal0 citationsOpen Access

Small-scale Bright Point Characteristics at High-resolution with the Daniel K. Inouye Solar Telescope

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PKP. H. KeysRCRyan J. CampbellDMDylan K. J. Magill

Key Points

  • The aim is to analyze the properties of bright points on the solar disc using high-resolution images from DKIST.
  • Used broadband photospheric images from the DKIST.
  • Analyzed bright point lifetimes, velocities, and area distributions.
  • Assessed the impact of variable seeing on spatial resolution.
  • Average bright point lifetime is 95 ± 29 seconds.
  • Mean transverse velocity is 1.60 ± 0.41 km/s.
  • Peak area distribution of bright points is 4800 km², lower than previous literature.

Abstract

Abstract Bright points (BPs) are small-scale, dynamic features that are ubiquitous across the solar disc and are often associated with the underlying magnetic field. Using broadband photospheric images obtained with the Visible Broadband Imager at the National Science Foundation’s Daniel K. Inouye Solar Telescope (DKIST), the properties of BPs have been analyzed with DKIST for the first time at the highest spatial resolutions achievable. BPs were observed to have an average lifetime of 95 ± 29 s and a mean transverse velocity of 1.60 ± 0.41 km s −1 . The BPs had a log-normal area distribution with a peak at 2300 km 2 . Transverse velocities and lifetimes across the DKIST images were comparable and consistent with previous studies. The area distribution of the DKIST data peaked in areas significantly lower than those from the literature. This was explored further and was observed to be due to an overestimation of BP areas due to the merging of close features when the spatial resolution is reduced, in tandem with possible oversplitting of features in the DKIST images. Furthermore, the effect of variable seeing in the data was determined. This showed that the average spatial resolution of the data was around 0 . ″ 034 ± 0 . ″ 007 , in comparison to the theoretical diffraction limit of 0 . ″ 022 . Accounting for the influence of seeing, the peak of the area distribution of BPs in the DKIST data was estimated as 4800 km 2 , which is still significantly lower than previously observed.

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Cite This Study

Keys et al. (2026) studied this question.

synapsesocial.com/papers/69aa6f3c531e4c4a9ff5947fhttps://doi.org/10.3847/1538-4357/ae2be4
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The evolution of chromospheric quiet-sun bright points during their lifetime2025
  2. 2Coronal and Chromospheric Dynamics of a Coronal Hole Bright Point2025
  3. 3Statistical Patterns in the Time Evolution of Interface Region Imaging Spectrograph Bright Points2026
  4. 4Using Bright Point Shapes to Constrain Wave Heating of the Solar Corona: Predictions for DKIST2024 · 2 citations
  5. 5Coexistence of Slow Magnetoacoustic Waves and Thermal Limit Cycles in a Coronal Bright Point2025