On the Nature of Propagating Intensity Disturbances in Polar Plumes during the 2017 Total Solar Eclipse
arXiv:2102.02085 · doi:10.3847/1538-4357/abdfd5
Abstract
The propagating intensity disturbances (PIDs) in plumes are still poorly understood and their identity (magnetoacoustic waves or flows) remains an open question. We investigate PIDs in five plumes located in the northern polar coronal hole observed during the 2017 total solar eclipse. Three plumes are associated with coronal bright points, jets and macrospicules at their base (active plumes) and the other two plumes are not (quiet plumes). The electron temperature at the base of the plumes is obtained from the filter ratio of images taken with the X-ray Telescope on board Hinode and the passband ratio around 400 nm from an eclipse instrument, the Diagnostic Coronagraph Experiment (DICE). The phase speed (v_r), frequency (omega), and wavenumber (k) of the PIDs in the plumes are obtained by applying a Fourier transformation to the space-time (r-t plane) plots in images taken with the Atmospheric Imaging Assembly (AIA) in three different wavelength channels (171 A, 193 A, and 211 A). We found that the PIDs in the higher temperature AIA channels, 193 and 211 A, are faster than that of the cooler AIA 171 A channel. This tendency is more significant for the active plumes than the quiet ones. The observed speed ratio (~1.3) between the AIA 171 and 193 A channels is similar to the theoretical value (1.25) of a slow magnetoacoustic wave. Our results support the idea that PIDs in plumes represent a superposition of slow magnetoacoustic waves and plasma outflows that consist of dense cool flows and hot coronal jets.
18 pages, 8 figures, accepted for publication in ApJ
References in corpus (13)
- Multi-scale Gaussian normalization for solar image processing
- The Depiction of Coronal Structure in White Light Images
- Observation of High-speed Outflow on Plume-like Structures of the Quiet Sun and Coronal Holes with SDO/AIA
- Evidence for polar jets as precursors of polar plume formation
- STEREO Observations of Quasi-Periodically Driven High Velocity Outflows in Polar Plumes
- Inbound waves in the solar corona: a direct indicator of Alfvén Surface location
- Propagating intensity disturbances in polar corona as seen from AIA/SDO
- Accelerating waves in polar coronal holes as seen by EIS and SUMER
- Propagating waves in polar coronal holes as seen by SUMER and EIS
- Observations of Dissipation of Slow Magneto-acoustic Waves in a Polar Coronal Hole
- Spectroscopic Observations of Propagating Disturbances in a Polar Coronal Hole: Evidence of Slow Magneto-acoustic Waves
- The Balloon-borne Investigation of Temperature and Speed of Electrons in the corona (BITSE): Mission Description and Preliminary Results
- Accelerating and Supersonic Density Fluctuations in Coronal Hole Plumes: Signature of Nascent Solar Winds