Seismic differences between solar magnetic cycles 23 and 24 for low-degree modes
arXiv:2410.23928 · doi:10.1051/0004-6361/202451949
Abstract
Solar magnetic activity follows regular cycles of about 11 years with an inversion of polarity in the poles every 22 years. This changing surface magnetism impacts the properties of the acoustic modes. The acoustic mode frequency shifts are a good proxy of the magnetic cycle. In this Letter we investigate solar magnetic activity cycles 23 and 24 through the evolution of the frequency shifts of low-degree modes (l= 0, 1, and 2) in three frequency bands. These bands probe properties between 74 and 1575 km beneath the surface. The analysis was carried out using observations from the space instrument Global Oscillations at Low Frequency and the ground-based Birmingham Solar Oscillations Network and Global Oscillation Network Group. The frequency shifts of radial modes suggest that changes in the magnetic field amplitude and configuration likely occur near the Sun's surface rather than near its core. The maximum shifts of solar cycle 24 occurred earlier at mid and high latitudes (relative to the equator) and about 1550 km beneath the photosphere. At this depth but near the equator, this maximum aligns with the surface activity but has a stronger magnitude. At around 74 km deep, the behaviour near the equator mirrors the behaviour at the surface, while at higher latitudes, it matches the strength of cycle 23.
Letter accepted in Astronomy and Astrophysics, 10 pages, 5 figures
References in corpus (22)
- The NumPy array: a structure for efficient numerical computation
- CoRoT reveals a magnetic activity cycle in a Sun-like star
- Asteroseismic measurement of surface-to-core rotation in a main sequence A star, KIC 11145123
- Asteroseismology of solar-type stars
- Surface rotation and photometric activity for Kepler targets. II. G and F main-sequence stars, and cool subgiant stars
- 30 to 100-kG magnetic fields in the cores of red giant stars
- The influence of metallicity on stellar differential rotation and magnetic activity
- Evidence for photometric activity cycles in 3203 Kepler stars
- Stellar magnetic activity and variability of oscillation parameters - An investigation of 24 solar-like stars observed by Kepler
- Seismic sensitivity to sub-surface solar activity from 18 years of GOLF/SoHO observations
- Revisiting the impact of stellar magnetic activity on the detectability of solar-like oscillations by Kepler
- What the sudden death of solar cycles can tell us about the nature of the solar interior
- BiSON data preparation: A correction for differential extinction and the weighted averaging of contemporaneous data
- About the p-mode frequency shifts in HD 49933
- Sun-as-a-star observations: evidence for degree dependence of changes in damping of low-l p modes along the solar cycle
- The Sun in transition? Persistence of near-surface structural changes through Cycle 24
- Continuous Solar Observations from the Ground -- Assessing Duty Cycle from GONG Observations
- Cycle dependency of a quasi-biennial variability in the solar interior
- The QBO-type signals in the subsurface flow fields during solar cycles 23 and 24
- Kepler main-sequence solar-like stars: surface rotation and magnetic-activity evolution
- Imprint of the magnetic activity cycle on solar asteroseismic characterisation based on 26 years of GOLF and BiSON data
- Evidence of solar-cycle related structural changes in the solar convection zone