Downflowing umbral flashes as an evidence of standing waves in sunspot umbrae
arXiv:2101.04188 · doi:10.1051/0004-6361/202039966
Abstract
Umbral flashes are sudden brightenings commonly visible in the core of chromospheric lines. Theoretical and numerical modeling suggest that they are produced by the propagation of shock waves. According to these models and early observations, umbral flashes are associated with upflows. However, recent studies have reported umbral flashes in downflowing atmospheres. We aim to understand the origin of downflowing umbral flashes. We explore how the existence of standing waves in the umbral chromosphere impacts the generation of flashed profiles. We performed numerical simulations of wave propagation in a sunspot umbra with the code MANCHA. The Stokes profiles of the Ca II 8542 Å line were synthesized with NICOLE. For freely-propagating waves, the chromospheric temperature enhancements of the oscillations are in phase with velocity upflows. In this case, the intensity core of the Ca II 8542 Å atmosphere is heated during the upflowing stage of the oscillation. If we consider a different scenario with a resonant cavity, the wave reflections at the sharp temperature gradient of the transition region lead to standing oscillations. In this situation, temperature fluctuations are shifted backward and temperature enhancements partially coincide with the downflowing stage of the oscillation. In umbral flashes produced by standing oscillations, the reversal of the emission feature is produced when the oscillation is downflowing. The chromospheric temperature keeps increasing while the atmosphere is changing from a downflow to an upflow. During the appearance of flashed Ca II 8542 Å cores, the atmosphere is upflowing most of the time, and only 38\% of the flashed profiles are associated with downflows. We find a scenario that remarkably explains the recent empirical findings of downflowing umbral flashes as a natural consequence of the presence of standing oscillations above sunspot umbrae.
Letter accepted for publication in A&A
References in corpus (15)
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- An Open Source, Massively Parallel Code for Non-LTE Synthesis and Inversion of Spectral Lines and Zeeman-induced Stokes Profiles
- Detection of supersonic downflows and associated heating events in the transition region above sunspots
- Synthetic observations of wave propagation in a sunspot umbra
- A Hot Downflowing Model Atmosphere For Umbral Flashes And The Physical Properties Of Their Dark Fibrils
- High Resolution Observations of Chromospheric Jets in Sunspot Umbra
- Magnetohydrodynamic Non-linearities in Sunspot Atmospheres: Chromospheric Detections of Intermediate Shocks
- Origin of the chromospheric three-minute oscillations in sunspot umbrae
- Semi-empirical model atmospheres for the chromosphere of the sunspot penumbra and umbral flashes
- Umbral chromospheric fine structure and umbral flashes modelled as one: the corrugated umbra
- The formation of small-scale umbral brightenings in sunspot atmospheres
- Shock Heating Energy of Umbral Flashes Measured with Integral Field Unit Spectroscopy
- Stable Umbral Chromospheric Structures
- Signatures of sunspot oscillations and the case for chromospheric resonances
- Inversions of synthetic umbral flashes: selection of wavelength sampling
Cited by in corpus (5)
- The European Solar Telescope
- Waves in the lower solar atmosphere: the dawn of next-generation solar telescopes
- Limitations of the Ca II 8542 Å line for the determination of magnetic field oscillations
- Impact of opacity effects on chromospheric oscillations inferred from NLTE inversions
- Observations of umbral flashes in the resonant sunspot chromosphere