First detection of acoustic-like flux in the middle solar corona
arXiv:2507.13487 · doi:10.1051/0004-6361/202554034
Abstract
Waves are thought to play a significant role in the heating of the solar atmosphere and the acceleration of the wind. Among the many types of waves observed in the Sun, the so-called p-modes with a 3 mHz frequency peak dominate the lower atmosphere. In the presence of magnetic fields, these waves can be converted into magnetohydrodynamic modes, which then leak into the corona through magnetic conduits. High-resolution off-limb observations have indeed revealed signatures of ubiquitous and global 3 mHz oscillations in the corona, although limited to low heights and to incompressible modes. We present high-cadence, high-resolution observations of the corona in the range 1.7 - 3.6 solar radii taken in broad-band 580-640 nm visible light by the Metis coronagraph aboard Solar Orbiter. These observations were designed to investigate density fluctuations in the middle corona. The data were acquired over several days in March 2022, October 2022, and for two days in April 2023. We selected representative regions of the corona on three sample dates. Analysis of the data in those regions revealed the presence of periodic density fluctuations. By examining several time-distance diagrams, we determined the main properties (apparent propagation speed, amplitude) of those fluctuations. We also show power spectra in selected locations in order to determine the dominant frequencies. We found wave-like, compressible fluctuations of low amplitude - of the order of 0.1 % of the background - in several large-scale regions in the corona at least up to 2.5 solar radii. We also found that the apparent propagation speeds of these perturbations typically fall in the range 150 - 450 km/s. A power spectrum analysis of time series revealed an excess power in the range 2-7 mHz, often with peaks at 3 or 5 mHz, i.e. in a range consistent with p-mode frequencies of the lower solar atmosphere.
To be published in Astronomy & Astrophysics
References in corpus (26)
- The Solar Orbiter mission -- Science overview
- Metis: the Solar Orbiter visible light and ultraviolet coronal imager
- Channeling 5-min photospheric oscillations into the solar outer atmosphere through small-scale vertical magnetic flux tubes
- Slow-Mode Magnetoacoustic Waves in Coronal Loops
- A basal contribution from p-modes to the Alfvénic wave flux in the Sun's corona
- Observation of High-speed Outflow on Plume-like Structures of the Quiet Sun and Coronal Holes with SDO/AIA
- A global view of velocity fluctuations in the corona below 1.3 with CoMP
- MHD Waves in open coronal structures
- The solar chromosphere at high resolution with IBIS. II. Acoustic shocks in the quiet internetwork and the role of magnetic fields
- Frequency-dependent damping in propagating slow magneto-acoustic waves
- Examining Periodic Solar Wind Density Structures Observed in the SECCHI Heliospheric Imagers
- The temporal and spatial scales of density structures released in the slow solar wind during solar activity maximum
- Waves in the lower solar atmosphere: the dawn of next-generation solar telescopes
- May 12 1997 Cme Event: I. a Simplified Model of the Pre-Eruptive Magnetic Structure
- Observational evidence for the associated formation of blobs and raining inflows in the solar Corona
- Defining the Middle Corona
- Accelerating waves in polar coronal holes as seen by EIS and SUMER
- First light observations of the solar wind in the outer corona with the Metis coronagraph
- Flux ropes and dynamics of the heliospheric current sheet
- Characterization of the slow wind in the outer corona
- Radial evolution of intermittency of density fluctuations in the fast solar wind
- Image enhancement with wavelet-optimized whitening
- Numerical determination of the cutoff frequency in solar models
- A Model for Coronal Inflows and In/Out Pairs
- Slow wind belt in the quiet solar corona
- Density fluctuation in the solar corona and solar wind: A comparative analysis of radio-occultation observations and magnetohydrodynamic simulation