English

Coronal Mini-jets in an Activated Solar Tornado-like Prominence

Solar and Stellar Astrophysics 2020-08-19 v1

Abstract

High-resolution observations from the Interface Region Imaging SpectrometerInterface~Region~Imaging~Spectrometer (IRISIRIS) reveal the existence of a particular type of small solar jets, which arose singly or in clusters from a tornado-like prominence suspended in the corona. In this study, we perform a detailed statistical analysis of 43 selected mini-jets in the tornado event. Our results show that the mini-jets typically have: (1) a projected length of 1.0-6.0 Mm, (2) a width of 0.2-1.0 Mm, (3) a lifetime of 10-50 s, (4) a velocity of 100-350 km s1^{-1}, and (5) an acceleration of 3-20 km s2^{-2}. Based on spectral diagnostics and EM-Loci analysis, these jets seem to be multi-thermal small-scale plasma ejections with an estimated average electron density of \sim2.4 ×\times 1010^{10} cm3^{-3} and an approximate mean temperature of \sim2.6 ×\times 105^{5} K. Their mean kinetic energy density, thermal energy density and dissipated magnetic field strength are roughly estimated to be \sim9 erg cm3^{-3}, 3 erg cm3^{-3}, and 16 G, respectively. The accelerations of the mini-jets, the UV and EUV brightenings at the footpoints of some mini-jets, and the activation of the host prominence suggest that the tornado mini-jets are probably created by fine-scale external or internal magnetic reconnections (a) between the prominence field and the enveloping or background field or (b) between twisted or braided flux tubes within the prominence. The observations provide insight into the geometry of such reconnection events in the corona and have implications for the structure of the prominence magnetic field and the instability that is responsible for the eruption of prominences and coronal mass ejections.

Keywords

Cite

@article{arxiv.2006.08252,
  title  = {Coronal Mini-jets in an Activated Solar Tornado-like Prominence},
  author = {Huadong Chen and Jun Zhang and Bart De Pontieu and Suli Ma and Bernhard Kliem and Eric Priest},
  journal= {arXiv preprint arXiv:2006.08252},
  year   = {2020}
}

Comments

17pages, 9 figures, 1 table, accepted for publication in ApJ

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