Cause of chromospheric opposite polarity intrusions discovered in Sunrise III/SCIP data: MURaM-ChE simulations point to twisted flux ropes
arXiv:2609.20933 · doi:10.3847/2041-8213/ae9607
Abstract
The Sunrise Chromospheric Infrared spectroPolarimeter (SCIP) instrument onboard the balloon-borne Sunrise III observatory provided new high-resolution observations of the solar chromosphere in the Ca II 854.2 nm line. The Stokes-V signal in magnetic network regions was found to show fine-structured details, which suggests the magnetic field above the network elements does not simply expand as a unipolar feature but displays opposite-polarity-intrusions (OPIs). These features appear as elongated structures in Stokes-V observations. In this work, we demonstrate that such features appear ubiquitously in a numerical simulation of the solar chromosphere. We use a simulation that is computed with the recently developed chromospheric extension of MURaM (MURaM-ChE) and resembles an enhanced network region. We find that OPIs appear ubiquitously in the vertical component of the magnetic field at around 1 Mm above the surface and are visible in the synthetic Stokes-V signal of the Ca II 854.2 nm line. The structures have lengths of 2 Mm to 7 Mm and widths of approximately 1 Mm. The magnetic field configurations associated with the OPI features appear to belong to twisted flux ropes (TFRs) and are visible for most of the time in the presented 21 min time series. Our results show that the magnetic structure of the chromosphere is more complex than previously thought, with even seemingly simple flux tubes showing embedded twisted fields pointing in the opposite direction. This may help in explaining new high-resolution observations from the Sunrise III mission.
13 pages, 9 figures, published in ApJL as part of the Sunrise III special issue, Arxiv version not language-edited
References in corpus (23)
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- Small-scale solar magnetic fields
- RH 1.5D: a massively parallel code for multi-level radiative transfer with partial frequency redistribution and Zeeman polarisation
- Transient small-scale brightenings in the quiet solar corona: a model for campfires observed with Solar Orbiter
- Ellerman bombs and UV bursts: transient events in chromospheric current sheets
- Three-dimensional Magnetohydrodynamic Simulation of the Formation of Solar Chromospheric Jets with Twisted Magnetic Field Lines
- Chromospheric Extension of the MURaM Code
- Vortex Flow Properties in Simulations of Solar Plage Region: Evidence for their role in chromospheric heating
- Sunrise III: Overview of Observatory and Instruments
- Solar Vortex Tubes: Vortex Dynamics in the Solar Atmosphere
- On the origin of the magnetic energy in the quiet solar chromosphere
- Mg ii h&k spectra of an enhanced network region simulated with the MURaM-ChE code. Results using 1.5D synthesis
- Swirls in the Solar Corona
- The Sunrise Chromospheric Infrared Spectro-Polarimeter SCIP: an instrument for SUNRISE III
- Quiet Sun flux rope formation via incomplete Taylor relaxation
- Synthesis of infrared Stokes spectra in an evolving solar chromospheric jet
- Structure and dynamics of the internetwork solar chromosphere: results of a small-scale dynamo simulation
- Probing chromospheric fine structures with a Hα proxy using MURaM-ChE
- Chromosphere of the quiet sun -- I. Shock and current-sheet dynamics and heating
- Magnetic flux cancellation in the solar atmosphere through 3D realistic numerical modeling
- Statistical properties of spicules in MURaM-ChE
- Ca ii 854.2 nm in an enhanced network region simulated with MURaM-ChE
- Three-dimensional Magnetic Field Structure of a Quiet-Sun Region Revealed by Sunrise III/SCIP