Prolonged and Extremely Non-radial Solar Wind Flows
Abstract
We present a study of three highly non-radial solar wind events when the azimuthal solar wind flow angle exceeds > 6 degrees for one day or more. None of the events are associated with coronal mass ejections and co-rotating interaction regions observed at 1 AU. For all events, the solar wind outflows at 1 AU have low solar wind velocity and solar wind density. Based on the significant increase in the Oxygen charge state ratio of O7+/O6+ at 1 AU for all of the events, we have traced them back to the Sun and found that their source regions originated in an active region and coronal hole (AR-CH) pairs mainly located at the central meridian. Further, examining the dynamical evolutions in their source regions using both the Extreme ultra-violet Imaging Telescope and Michelson Doppler Imager, it is found that the changes taking place in AR-CH boundaries eventually disturbed the stable CH configurations, resulting in a reduction of the CH area and finally its disappearance, leaving only with the AR. Our study provides a possible explanation to discuss the origin of the prolonged and highly non-radial solar wind flows.
Keywords
Cite
@article{arxiv.2401.10863,
title = {Prolonged and Extremely Non-radial Solar Wind Flows},
author = {Susanta Kumar Bisoi and Diptiranjan Rout and P. Janardhan and K. Fujiki and Dibyendu Chakrabarty and Karan Sahu},
journal= {arXiv preprint arXiv:2401.10863},
year = {2024}
}
Comments
Bulletin de la Soci\'et\'e Royale des Sciences de Li\`ege (BSRSL), 93 (2), 1-13 (in press)