GONG p-mode parameters through two solar cycles
Abstract
We investigate the parameters of global solar p-mode oscillations, namely damping width , amplitude , mean squared velocity , energy , and energy supply rate , derived from two solar cycles' worth (1996 - 2018) of Global Oscillation Network Group (GONG) time series for harmonic degrees . We correct for the effect of fill factor, apparent solar radius, and spurious jumps in the mode amplitudes. We find that the amplitude of the activity related changes of and depends on both frequency and harmonic degree of the modes, with the largest variations of for modes with and with a min-to-max variation of and of for modes with and with a min-to-max variation of . The level of correlation between the solar radio flux and mode parameters also depends on mode frequency and harmonic degree. As a function of mode frequency, the mode amplitudes are found to follow an asymmetric Voigt profile with . From the mode parameters, we calculate physical mode quantities and average them over specific mode frequency ranges. This way, we find that the mean squared velocities and energies of p modes are anti-correlated with the level of activity, varying by and , respectively, and that the mode energy supply rates show no significant correlation with activity. With this study we expand previously published results on the temporal variation of solar p-mode parameters. Our results will be helpful to future studies of the excitation and damping of p modes, i.e., the interplay between convection, magnetic field, and resonant acoustic oscillations.
Keywords
Cite
@article{arxiv.1810.09324,
title = {GONG p-mode parameters through two solar cycles},
author = {René Kiefer and Rudi Komm and Frank Hill and Anne-Marie Broomhall and Markus Roth},
journal= {arXiv preprint arXiv:1810.09324},
year = {2018}
}
Comments
Accepted for publication in Solar Physics. 33 pages, 16 figures, 5 tables