Propagating Disturbances in Coronal Loops: A Detailed Analysis of Propagation Speeds
arXiv:1205.0891 · doi:10.1007/s11207-012-0042-5
Abstract
Quasi-periodic disturbances have been observed in the outer solar atmosphere for many years now. Although first interpreted as upflows (Schrijver et al. (1999)), they have been widely regarded as slow magnetoacoustic waves, due to observed velocities and periods. However, recent observations have questioned this interpretation, as periodic disturbances in Doppler velocity, line width and profile asymmetry were found to be in phase with the intensity oscillations (De Pontieu et al. (2010),Tian1 et al. (2011))}, suggesting the disturbances could be quasi-periodic upflows. Here we conduct a detailed analysis of the velocities of these disturbances across several wavelengths using the Atmospheric Imaging Assembly (AIA) on board the Solar Dynamics Observatory (SDO). We analysed 41 examples, including both sunspot and non sunspot regions of the Sun. We found that the velocities of propagating disturbances (PDs) located at sunspots are more likely to be temperature dependent, whereas the velocities of PDs at non sunspot locations do not show a clear temperature dependence. We also considered on what scale the underlying driver is affecting the properties of the PDs. Finally, we found that removing the contribution due to the cooler ions in the 193 A wavelength suggests that a substantial part of the 193 emission of sunspot PDs can be contributed to the cool component of 193Å.
26 Papges, 15 Figures
References in corpus (8)
- Observing the Roots of Solar Coronal Heating - in the Chromosphere
- Two components of the coronal emission revealed by EUV spectroscopic observations
- The Spectroscopic Signature of Quasi-periodic Upflows in Active Region Timeseries
- Observation of High-speed Outflow on Plume-like Structures of the Quiet Sun and Coronal Holes with SDO/AIA
- STEREO Observations of Quasi-Periodically Driven High Velocity Outflows in Polar Plumes
- Propagating intensity disturbances in polar corona as seen from AIA/SDO
- Propagating waves in polar coronal holes as seen by SUMER and EIS
- Continuous upflows and sporadic downflows observed in active regions
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- Oscillations in active region fan loops: Observations from EIS/{\it Hinode} and AIA/SDO
- Unravelling the components of a multi-thermal coronal loop using magnetohydrodynamic seismology
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- Properties of local oscillations in the lower sunspot atmosphere
- Exploring source region of 3-min slow magnetoacoustic waves observed in coronal fan loops rooted in sunspot umbra
- Wave amplitude modulation in fan loops as observed by AIA/SDO
- Spatial Distribution of Origin of Umbral Waves in a Sunspot Umbra
- Direct observations of different sunspot waves influenced by umbral flashes
- Reconnection generated plasma flows in the quasi-separatrix layer in localised solar corona
- Fine wave dynamics in umbral flash sources
- Phase speed and frequency-dependent damping of longitudinal intensity oscillations in coronal loop structures observed with AIA/SDO
- The dynamics of 3-minute wavefronts and their relation to sunspot magnetic fields
- Propagating Disturbances along fan-like coronal loops in an active region
- Behaviour of oscillations in loop structures above active regions
- The Temperature-dependent Damping of Propagating Slow Magnetoacoustic Waves