High Resolution Helioseismic Imaging of Subsurface Structures and Flows of A Solar Active Region Observed by Hinode
arXiv:0911.1161 · doi:10.1088/0004-637X/708/1/304
Abstract
We analyze a solar active region observed by the Hinode CaII H line using the time-distance helioseismology technique, and infer wave-speed perturbation structures and flow fields beneath the active region with a high spatial resolution. The general subsurface wave-speed structure is similar to the previous results obtained from SOHO/MDI observations. The general subsurface flow structure is also similar, and the downward flows beneath the sunspot and the mass circulations around the sunspot are clearly resolved. Below the sunspot, some organized divergent flow cells are observed, and these structures may indicate the existence of mesoscale convective motions. Near the light bridge inside the sunspot, hotter plasma is found beneath, and flows divergent from this area are observed. The Hinode data also allow us to investigate potential uncertainties caused by the use of phase-speed filter for short travel distances. Comparing the measurements with and without the phase-speed filtering, we find out that inside the sunspot, mean acoustic travel times are in basic agreement, but the values are underestimated by a factor of 20-40% inside the sunspot umbra for measurements with the filtering. The initial acoustic tomography results from Hinode show a great potential of using high-resolution observations for probing the internal structure and dynamics of sunspots.
accepted for publication in ApJ
References in corpus (12)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Penumbral structure and outflows in simulated sunspots
- Helioseismology of Sunspots: A Case Study of NOAA Region 9787
- Subsurface Circulations within Active Regions
- Surface-focused Seismic Holography of Sunspots: I. Observations
- Surface Magnetism Effects in Time-Distance Helioseismology
- Sensitivity of time-distance helioseismic measurements to spatial variation of oscillation amplitudes I. Observations and a numerical model
- Traveling Waves of Magnetoconvection and the Origin of the Evershed Effect in Sunspots
- Morphology and evolution of umbral dots and their substructures
- Influence of Non-Uniform Distribution of Acoustic Wavefield Strength on Time-Distance Helioseismology Measurements
- Time Distance Study of Isolated Sunspots
- Helioseismic Signature of Chromospheric Downflows in Acoustic Travel-Time Measurements from Hinode
Cited by in corpus (26)
- The Sun's Supergranulation
- Penumbral fine structure and driving mechanisms of large-scale flows in simulated sunspots
- Subsurface magnetic field and flow structure of simulated sunspots
- Mechanism of spontaneous formation of stable magnetic structures on the Sun
- Time--Distance Helioseismology Data Analysis Pipeline for Helioseismic and Magnetic Imager onboard Solar Dynamics Observatory (SDO/HMI) and Its Initial Results
- Local Helioseismology of Sunspots: Current Status and Perspectives (Invited Review)
- Dynamo action and magnetic buoyancy in convection simulations with vertical shear
- Mean-field and direct numerical simulations of magnetic flux concentrations from vertical field
- Advances in Global and Local Helioseismology: an Introductory Review
- Horizontal flow fields in and around a small active region-- The transition period between flux emergence and decay
- Detection of Fast-Moving Waves Propagating Outward along Sunspots' Radial Direction in the Photosphere
- What have we learned from helioseismology, what have we really learned, and what do we aspire to learn?
- Towards Waveform Heliotomography: Observing Interactions of Helioseismic Waves with a Sunspot
- Temporal Evolution of Sunspot Areas and Estimation of Related Plasma Flows
- Analysis of SOHO/MDI and TRACE Observations of Sunspot Torsional Oscillation in AR10421
- Analysis of Helioseismic Power-Spectrum Diagram of A Sunspot
- Origin of Deep Acoustic Sources Associated with Solar Magnetic Structures
- Reconstruction of Solar Subsurfaces by Local Helioseismology
- Local helioseismology of sunspot regions: comparison of ring-diagram and time-distance results
- Local Helioseismology of Emerging Active Regions: A Case Study
- Statistical analysis of acoustic wave parameters near active regions
- Statistical analysis of acoustic wave power and flows around solar active regions
- A new look at sunspot formation using theory and observations
- Investigation of a Sunspot Complex by Helioseismology
- One-sided arc averaging geometries in time-distance local helioseismology
- Diverging and Converging Flows around Sunspot Structures in Rotating and Non-Rotating Axisymmetric MHD Simulations