Solar meridional circulation from twenty-one years of SOHO/MDI and SDO/HMI observations: Helioseismic travel times and forward modeling in the ray approximation
arXiv:1808.08874 · doi:10.1051/0004-6361/201833673
Abstract
The south-north travel-time differences are measured by applying time-distance helioseismology to the MDI and HMI medium-degree Dopplergrams covering May 1996-April 2017. Our data analysis corrects for several sources of systematic effects: P-angle error, surface magnetic field effects, and center-to-limb variations. An interpretation of the travel-time measurements is obtained using a forward-modeling approach in the ray approximation. The travel-time differences are similar in the southern hemisphere for cycles 23 and 24. However, they differ in the northern hemisphere between cycles 23 and 24. Except for cycle 24's northern hemisphere, the measurements favor a single-cell meridional circulation model where the poleward flows persist down to 0.8 , accompanied by local inflows toward the activity belts in the near-surface layers. Cycle 24's northern hemisphere is anomalous: travel-time differences are significantly smaller when travel distances are greater than 20. This asymmetry between northern and southern hemispheres during cycle 24 was not present in previous measurements (e.g., Rajaguru & Antia 2015), which assumed a different P-angle error correction where south-north travel-time differences are shifted to zero at the equator for all travel distances. In our measurements, the travel-time differences at the equator are zero for travel distances less than 30, but they do not vanish for larger travel distances. This equatorial offset for large travel distances need not be interpreted as a deep cross-equator flow; it could be due to the presence of asymmetrical local flows at the surface near the end points of the acoustic ray paths.
accepted for publication in A&A
References in corpus (17)
- Solar differential rotation and meridional flow: The role of a subadiabatic tachocline for the Taylor-Proudman balance
- Acoustic tomography of solar convective flows and structures
- Meridional Flow in the Solar Convection Zone II: Helioseismic Inversions of GONG Data
- Observation and Modeling of the Solar-Cycle Variation of the Meridional Flow
- Prospects for the Detection of the Deep Solar Meridional Circulation
- A Comprehensive Method to Measure Solar Meridional Circulation and Center-to-Limb Effect Using Time-Distance Helioseismology
- Computational helioseismology in the frequency domain: acoustic waves in axisymmetric solar models with flows
- Meridional Flow in the Solar Convection Zone I: Measurements from GONG Data
- Inversions for Deep Solar Meridional Flow Using Spherical Born Kernels
- On-Orbit Performance of the Helioseismic and Magnetic Imager Instrument onboard the Solar Dynamics Observatory
- Effects of Solar Active Regions on Meridional Flows
- Measuring solar active region inflows with local correlation tracking of granulation
- Helioseismic inversion to infer depth profile of solar meridional flow using spherical Born kernels
- Comparison of acoustic travel-time measurement of solar meridional circulation from SDO/HMI and SOHO/MDI
- Double-Cell Type Solar Meridional Circulation Based on Mean-Field Hydrodynamic Model
- On the origin of the double cell meridional circulation in the solar convection zone
- Sensitivity kernels for time-distance helioseismology: efficient computation for spherically-symmetric solar models
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