Signature of solar g modes in first-order p-mode frequency shifts
arXiv:1907.02379 · doi:10.1051/0004-6361/201935434
Abstract
Context. Solar gravity modes (g modes) are buoyancy waves trapped in the solar radiative zone that have been very difficult to detect at the surface. Solar g modes would complement solar pressure modes (p modes) in probing the central regions of the Sun, for example the core rotation rate. Aims. A detection of g modes using changes in the large frequency separation of p modes has recently been reported. However, it is unclear how p and g modes interact. The aim of this study is to evaluate to what extent g modes can perturb the frequencies of p modes. Methods. We computed the first-order perturbation to global p-mode frequencies due to a flow field and perturbations to solar structure caused by a g mode. We focused on long-period g modes and assumed that the g-mode perturbations are constant in time. The surface amplitude of g modes is assumed to be mm s, which is close to the observational limit. Results. Gravity modes do perturb p-mode frequencies to first order if the harmonic degree of the g mode is even and if its azimuthal order is zero. The effect is extremely small. For dipole and quadrupole p modes, all frequency shifts are smaller than nHz, or in relative numbers. This is because the relative perturbation to solar structure quantities caused by a g mode of realistic amplitude is of the order of to . We find that structural changes dominate over advection. Surprisingly, the interaction of g and p modes takes place to a large part near the surface, where p modes spend most of their propagation times and g modes generate the largest relative changes to solar structure. Conclusions. It appears to be impossible to detect g modes solely through their signature in p-mode frequency shifts. Whether g modes leave a detectable signature in p-mode travel times under a given observational setup remains an open question.
16 pages, 11 figures, accepted for publication in A&A, title and affiliation updated
References in corpus (12)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Angular momentum transport by heat-driven g-modes in slowly pulsating B stars
- Global Seismology of the Sun
- Global-scale equatorial Rossby waves as an essential component of solar internal dynamics
- Asymptotic g modes: Evidence for a rapid rotation of the solar core
- Time-distance helioseismology of solar Rossby waves
- Fragile detection of solar g modes by Fossat et al
- Evidence for Large-Scale Subsurface Convection in the Sun
- Sensitivity of Helioseismic Measurements of Normal-mode Coupling to Flows and Sound-speed Perturbations
- A Critical Evaluation of Recent Claims Concerning Solar Rotation
- Sensitivity kernels for time-distance helioseismology: efficient computation for spherically-symmetric solar models
- The Direct Effect of Toroidal Magnetic Fields on Stellar Oscillations: An Analytical Expression for the General Matrix Element