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October 5, 20250 citationsOpen Access

Oscillations of the solar photospheric magnetic field caused by the m = 1 high-latitude inertial mode

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SHStephan G. HeinemannZLZhi–Chao LiangLGL. Gizon

Key Points

  • Periodic oscillations at 338 nHz were detected, indicating ties to the m = 1 high-latitude inertial mode.
  • The peak magnetic oscillation amplitude reached up to 0.2 gauss, aligning with model predictions.
  • Direct observations were conducted using data from the Helioseismic and Magnetic Imager and the Global Oscillation Network Group.
  • These findings suggest a distinct spatial pattern of magnetic field oscillations across the equator.

Abstract

Periodic oscillations at 338 nHz in the Earth frame are observed at high latitudes in direct Doppler velocity measurements. These oscillations correspond to the m=1 high-latitude global mode of inertial oscillation. In this study, we investigate the signature of this mode in the photospheric magnetic field using long-term series of line-of-sight magnetograms from the Helioseismic and Magnetic Imager (HMI) and the Global Oscillation Network Group (GONG). Through direct observations and spectral analysis, we detect periodic magnetic field oscillations at high latitudes (65^--70^) with a frequency of 338 nHz in the Earth frame, matching the known frequency of the m = 1 high-latitude inertial mode. The observed line-of-sight magnetic field oscillations are predominantly symmetric across the equator. We find a peak magnetic oscillation amplitude of up to 0. 2~gauss and a distinct spatial pattern, both consistent with simplified model calculations in which the radial component of the magnetic field is advected by the mode's horizontal flow field.

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Cite This Study

Heinemann et al. (2025) studied this question.

synapsesocial.com/papers/68e25378d6d66a53c24740f3https://doi.org/10.48550/arxiv.2510.00596
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Characterizing the Observational Properties of the Sun's High-latitude m=1 Inertial Mode2025
  2. 2Characterizing the Observational Properties of the Sun’s High-latitude <i>m</i> = 1 Inertial Mode2025
  3. 3Numerical Investigations of Low‐Latitude Ground Magnetic Fields Due To Cavity Mode Oscillations2026
  4. 4Towards inertial-mode helioseismology: Direct sensing of solar rotation at 75 deg latitude and 0.8 Rsun2026
  5. 5Unexpected frequency of horizontal oscillations of magnetic structures in the solar photosphere2024 · 5 citations