First simultaneous SST/CRISP and IRIS observations of a small-scale quiet Sun vortex
arXiv:1512.06032 · doi:10.1051/0004-6361/201527440
Abstract
Ubiquitous small-scale vortices have recently been found in the lower atmosphere of the quiet Sun in state-of-the-art solar observations and in numerical simulations. We investigate the characteristics and temporal evolution of a granular-scale vortex and its associated upflows through the photosphere and chromosphere of a quiet Sun internetwork region. We analyzed high spatial and temporal resolution ground- and spaced-based observations of a quiet Sun region. The observations consist of high-cadence time series of wideband and narrowband images of both H-alpha 6563 A and Ca II 8542 A lines obtained with the CRisp Imaging SpectroPolarimeter (CRISP) instrument at the Swedish 1-m Solar Telescope (SST), as well as ultraviolet imaging and spectral data simultaneously obtained by the Interface Region Imaging Spectrograph (IRIS). A small-scale vortex is observed for the first time simultaneously in H-alpha, Ca II 8542 A, and Mg II k lines. During the evolution of the vortex, H-alpha narrowband images at -0.77 A and Ca II 8542 A narrowband images at -0.5 A, and their corresponding Doppler Signal maps, clearly show consecutive high-speed upflow events in the vortex region. These high-speed upflows with a size of 0.5-1 Mm appear in the shape of spiral arms and exhibit two distinctive apparent motions in the plane of sky for a few minutes: (1) a swirling motion with an average speed of 13 km/s and (2) an expanding motion at a rate of 4-6 km/s. Furthermore, the spectral analysis of Mg II k and Mg II subordinate lines in the vortex region indicates an upward velocity of up to about 8 km/s along with a higher temperature compared to the nearby quiet Sun chromosphere. The consecutive small-scale vortex events can heat the upper chromosphere by driving continuous high-speed upflows through the lower atmosphere.
9 pages, 7 figures, accepted for publication in A&A
References in corpus (7)
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- CRISPRED: A data pipeline for the CRISP imaging spectropolarimeter
- Convectively driven vortex flows in the Sun
- On the prevalence of small-scale twist in the solar chromosphere and transition region
- The Formation of IRIS diagnostics. IV. The Mg II triplet lines as a new diagnostic for lower chromospheric heating
- Heating signatures in the disk counterparts of solar spicules in IRIS observations
- On the plasma flow inside magnetic tornadoes on the Sun
Cited by in corpus (19)
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- The European Solar Telescope
- Waves in the lower solar atmosphere: the dawn of next-generation solar telescopes
- Simulations Show that Vortex Flows could Heat the Chromosphere in Solar Plage
- Vortex Flow Properties in Simulations of Solar Plage Region: Evidence for their role in chromospheric heating
- The Alfvénic nature of chromospheric swirls
- Observational Evidence of Magnetic Reconnection for Brightenings and Transition Region Arcades in IRIS observations
- Vortex Flows in the Solar Chromosphere -- I. Automatic detection method
- Automated Swirl Detection Algorithm (ASDA) and Its Application to Simulation and Observational Data
- Stirring the Base of the Solar Wind: On Heat Transfer and Vortex Formation
- Magnetic Tornado Properties: A Substantial Contribution to the Solar Coronal Heating via Efficient Energy Transfer
- Three-dimensional MHD wave propagation near a coronal null point: a new wave mode decomposition approach
- Magnetic shocks and substructures excited by torsional Alfvén wave interactions in merging expanding flux tubes
- Convectively driven sinks and magnetic fields in the quiet Sun
- Chromospheric swirls I. Automated detection in H observations and their statistical properties
- Influence of ambipolar and Hall effects on vorticity in 3D simulations of magneto-convection
- The non-ideal finite Larmor radius effect in the solar atmosphere
- A persistent quiet-Sun small-scale tornado. II. Oscillations
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)