English

Solar-Cycle Variation of quiet-Sun Magnetism and Surface Gravity Oscillation Mode

Solar and Stellar Astrophysics 2022-09-21 v1 Distributed, Parallel, and Cluster Computing

Abstract

The origin of the quiet Sun magnetism is under debate. Investigating the solar cycle variation observationally in more detail can give us clues about how to resolve the controversies. We investigate the solar cycle variation of the most magnetically quiet regions and their surface gravity oscillation (ff-) mode integrated energy (EfE_f). We use 12 years of HMI data and apply a stringent selection criteria, based on spatial and temporal quietness, to avoid any influence of active regions (ARs). We develop an automated high-throughput pipeline to go through all available magnetogram data and to compute EfE_f for the selected quiet regions. We observe a clear solar cycle dependence of the magnetic field strength in the most quiet regions containing several supergranular cells. For patch sizes smaller than a supergranular cell, no significant cycle dependence is detected. The EfE_f at the supergranular scale is not constant over time. During the late ascending phase of Cycle 24 (SC24, 2011-2012), it is roughly constant, but starts diminishing in 2013, as the maximum of SC24 is approached. This trend continues until mid-2017, when hints of strengthening at higher southern latitudes are seen. Slow strengthening continues, stronger at higher latitudes than at the equatorial regions, but EfE_f never returns back to the values seen in 2011-2012. Also, the strengthening trend continues past the solar minimum, to the years when SC25 is already clearly ascending. Hence the EfE_f behavior is not in phase with the solar cycle. The anticorrelation of EfE_f with the solar cycle in gross terms is expected, but the phase shift of several years indicates a connection to the poloidal large-scale magnetic field component rather than the toroidal one. Calibrating AR signals with the QS EfE_f does not reveal significant enhancement of the ff-mode prior to AR emergence.

Keywords

Cite

@article{arxiv.2205.04419,
  title  = {Solar-Cycle Variation of quiet-Sun Magnetism and Surface Gravity Oscillation Mode},
  author = {Maarit J. Korpi-Lagg and Andreas Korpi-Lagg and Nigul Olspert and Hong-Linh Truong},
  journal= {arXiv preprint arXiv:2205.04419},
  year   = {2022}
}

Comments

10 pages, 11 figures, submitted to Astronomy & Astrophysics