First polar observations of the fast solar wind with the Metis – Solar Orbiter coronagraph: Role of 2D turbulence energy dissipation in the wind acceleration

Author:

Telloni D.ORCID,Antonucci E.,Adhikari L.,Zank G. P.,Giordano S.,Vai M.,Zhao L.-L.,Andretta V.,Burtovoi A.,Capuano G. E.,Da Deppo V.,De Leo Y.,Fineschi S.,Grimani C.,Heinzel P.,Jerse G.,Landini F.,Liberatore A.,Moses J. D.,Naletto G.,Nicolini G.,Pancrazzi M.,Romoli M.,Russano G.,Sasso C.,Slemer A.,Spadaro D.,Stangalini M.,Susino R.,Teriaca L.,Uslenghi M.,Sorriso-Valvo L.,Marino R.,Perrone D.,D’Amicis R.,Bruno R.

Abstract

Context.The fast solar wind is known to emanate from polar coronal holes.Aims.This Letter reports the first estimate of the expansion rate of polar coronal flows performed by the Metis coronagraph on board Solar Orbiter.Methods.By exploiting simultaneous measurements in polarized white light and ultraviolet intensity of the neutral hydrogen Lyman-αline, it was possible to extend observations of the outflow velocity of the main component of the solar wind from polar coronal holes out to 5.5 R, the limit of diagnostic applicability and observational capabilities.Results.We complement the results obtained with analogous polar observations performed with the UltraViolet Coronagraph Spectrometer on board the SOlar and Heliospheric Observatory during the previous full solar activity cycle, and find them to be satisfactorily reproduced by a magnetohydrodynamic turbulence model.Conclusions.This suggests that the dissipation of 2D turbulence energy is a viable mechanism for coronal plasma heating and the subsequent acceleration of the fast solar wind.

Funder

Italian Space Agency

Publisher

EDP Sciences

Subject

Space and Planetary Science,Astronomy and Astrophysics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Coronal Heating Rate in the Slow Solar Wind;The Astrophysical Journal Letters;2023-09-01

2. Energy Budget in the Solar Corona;The Astrophysical Journal;2023-08-28

3. Quantifying the Energy Budget in the Solar Wind from 13.3 to 100 Solar Radii;The Astrophysical Journal;2023-07-01

4. Slow solar wind modeling of the Metis/Solar Orbiter – Parker Solar Probe quadrature;Journal of Physics: Conference Series;2023-07-01

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