What causes the high apparent speeds in chromospheric and transition region spicules on the Sun?
arXiv:1710.06803 · doi:10.3847/2041-8213/aa9272
Abstract
Spicules are the most ubuiquitous type of jets in the solar atmosphere. The advent of high-resolution imaging and spectroscopy from the Interface Region Imaging Spectrograph (IRIS) and ground-based observatories has revealed the presence of very high apparent motions of order 100-300 km/s in spicules, as measured in the plane of the sky. However, line-of-sight measurements of such high speeds have been difficult to obtain, with values deduced from Doppler shifts in spectral lines typically of order 30-70 km/s. In this work we resolve this long-standing discrepancy using recent 2.5D radiative MHD simulations. This simulation has revealed a novel driving mechanism for spicules in which ambipolar diffusion resulting from ion-neutral interactions plays a key role. In our simulation we often see that the upward propagation of magnetic waves and electrical currents from the low chromosphere into already existing spicules can lead to rapid heating when the currents are rapidly dissipated by ambipolar diffusion. The combination of rapid heating and the propagation of these currents at Alfvénic speeds in excess of 100 km/s leads to the very rapid apparent motions, and often wholesale appearance, of spicules at chromospheric and transition region temperatures. In our simulation, the observed fast apparent motions in such jets are actually a signature of a heating front, and much higher than the mass flows, which are of order 30-70 km/s. Our results can explain the behavior of transition region "network jets" and the very high apparent speeds reported for some chromospheric spicules.
8 pages, 5 figures, accepted for publication in ApJ Letters
References in corpus (11)
- Solar Coronal Jets: Observations, Theory, and Modeling
- Prevalence of Small-scale Jets from the Networks of the Solar Transition Region and Chromosphere
- Dynamic Fibrils are driven by Magnetoacoustic Shocks
- High Resolution Observations and Modeling of Dynamic Fibrils
- On the generation of solar spicules and Alfvénic waves
- Non-equilibrium hydrogen ionization in 2D simulations of the solar atmosphere
- On the prevalence of small-scale twist in the solar chromosphere and transition region
- Magnetoacoustic shocks as driver of quiet Sun mottles
- Statistical properties of the Disk Counterparts of Type II Spicules from simultaneous observations of RBEs in Ca II 8542 and Hα
- Heating signatures in the disk counterparts of solar spicules in IRIS observations
- Two-dimensional Radiative Magnetohydrodynamic Simulations of Partial Ionization in the Chromosphere. II. Dynamics and Energetics of the Low Solar Atmosphere
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- Generation of Solar Spicules and Subsequent Atmospheric Heating
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- IRIS observations of short-term variability in moss associated with transient hot coronal loops
- Spicules and downflows in the solar chromosphere
- Investigating the Transition Region Explosive Events and Their Relationship to Network Jets
- Coronal Mini-jets in an Activated Solar Tornado-like Prominence
- On the relation between transition region network jets and coronal plumes
- Heating at the remote footpoints as a brake on jet flows along loops in the solar atmosphere
- Evidence of multithermal nature of spicular downflows. Impact on solar atmospheric heating
- Two-fluid numerical model of chromospheric heating and plasma outflows in a quiet-Sun
- Rapid Evolution of Type II Spicules Observed in Goode Solar Telescope On-Disk H-alpha Images
- Penumbral micro-jets at high spatial and temporal resolution
- Spectroscopic observation of a transition region network jet
- A multi-diagnostic spectral analysis of penumbral microjets
- The dark side of penumbral microjets: Observations in Hα
- A New Type of Jets in a Polar Limb of Solar Coronal Hole
- Small-scale Bright Blobs Ejected from a Sunspot Light Bridge