English

Does Turbulence along the Coronal Current Sheet Drive Ion Cyclotron Waves?

Solar and Stellar Astrophysics 2023-03-08 v1

Abstract

Evidence for the presence of ion cyclotron waves, driven by turbulence, at the boundaries of the current sheet is reported in this paper. By exploiting the full potential of the joint observations performed by Parker Solar Probe and the Metis coronagraph on board Solar Orbiter, local measurements of the solar wind can be linked with the large-scale structures of the solar corona. The results suggest that the dynamics of the current sheet layers generates turbulence, which in turn creates a sufficiently strong temperature anisotropy to make the solar-wind plasma unstable to anisotropy-driven instabilities such as the Alfv\'en ion-cyclotron, mirror-mode, and firehose instabilities. The study of the polarization state of high-frequency magnetic fluctuations reveals that ion cyclotron waves are indeed present along the current sheet, thus linking the magnetic topology of the remotely imaged coronal source regions with the wave bursts observed in situ. The present results may allow improvement of state-of-the-art models based on the ion cyclotron mechanism, providing new insights into the processes involved in coronal heating.

Keywords

Cite

@article{arxiv.2302.10545,
  title  = {Does Turbulence along the Coronal Current Sheet Drive Ion Cyclotron Waves?},
  author = {Daniele Telloni and Gary P. Zank and Laxman Adhikari and Lingling Zhao and Roberto Susino and Ester Antonucci and Silvano Fineschi and Marco Stangalini and Catia Grimani and Luca Sorriso-Valvo and Daniel Verscharen and Raffaele Marino and Silvio Giordano and Raffaella D'Amicis and Denise Perrone and Francesco Carbone and Alessandro Liberatore and Roberto Bruno and Gaetano Zimbardo and Marco Romoli and Vincenzo Andretta and Vania Da Deppo and Petr Heinzel and John D. Moses and Giampiero Naletto and Gianalfredo Nicolini and Daniele Spadaro and Luca Teriaca and Aleksandr Burtovoi and Yara De Leo and Giovanna Jerse and Federico Landini and Maurizio Pancrazzi and Clementina Sasso and Alessandra Slemer},
  journal= {arXiv preprint arXiv:2302.10545},
  year   = {2023}
}

Comments

12 pages

R2 v1 2026-06-28T08:45:23.599Z