Magnetic field fluctuations in the shocked umbral chromosphere
T. Felipe, S. J. Gonz\'alez Manrique, C. R. Sangeetha, A. Asensio, Ramos

TL;DR
This study investigates magnetic field fluctuations in the umbral chromosphere associated with shock waves, revealing that these fluctuations are mainly caused by changes in the line's response height due to shocks, rather than external influences.
Contribution
It provides new insights into the origin of magnetic field fluctuations, linking them to shock-induced changes in line response height and wave propagation in sunspot umbrae.
Findings
Magnetic field fluctuations reach up to 2900 G in the umbra.
Fluctuations are coherent with velocity oscillations and lag shock fronts.
Line response height shifts explain large magnetic field fluctuations.
Abstract
Several studies have reported magnetic field fluctuations associated with umbral shock waves. We aim to study the properties and origin of magnetic field fluctuations in the umbral chromosphere. Temporal series of spectropolarimetric observations were acquired with the GREGOR telescope. The chromospheric and photospheric conditions were derived from simultaneous inversions of the He I 10830 \AA\ triplet and the Si I 10827 \AA\ line using HAZEL2. The oscillations are interpreted using wavelet analysis and context information from UV observations acquired with SDO/AIA and IRIS. The chromospheric magnetic field shows strong fluctuations in the sunspot umbra, with peak field strengths up to 2900 G. Magnetic field and velocity umbral oscillations exhibit a strong coherence, with the magnetic field lagging the shock fronts detected in the velocity fluctuations. This points to a common origin…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Stellar, planetary, and galactic studies · Ionosphere and magnetosphere dynamics
