Temporal relation between quiet-Sun transverse fields and the strong flows detected by IMaX/SUNRISE
C. Quintero Noda, V. Mart\'inez Pillet, J.M. Borrero, S.K. Solanki

TL;DR
This study investigates the temporal and spatial relationship between transverse magnetic fields and strong Doppler flows in the quiet Sun, suggesting small-scale magnetic reconnection events as a key process.
Contribution
It provides new constraints on the timing and location of magnetic emergence and flows, highlighting the role of small-scale reconnection in quiet Sun dynamics.
Findings
Linear polarization signals precede strong flows by ~84 seconds.
Strong flows are closer to neutral lines than random points.
Most flows occur near neutral lines between emerging and pre-existing fields.
Abstract
Localized strongly Doppler-shifted Stokes V signals were detected by IMaX/SUNRISE. These signals are related to newly emerged magnetic loops that are observed as linear polarization features. We aim to set constraints on the physical nature and causes of these highly Doppler-shifted signals. In particular, the temporal relation between the appearance of transverse fields and the strong Doppler shifts is analyzed in some detail. We calculated the time difference between the appearance of the strong flows and the linear polarization. We also obtained the distances from the center of various features to the nearest neutral lines and whether they overlap or not. These distances were compared with those obtained from randomly distributed points on observed magnetograms. Various cases of strong flows are described in some detail. The linear polarization signals precede the appearance of the…
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