Influence of Non-Uniform Distribution of Acoustic Wavefield Strength on Time-Distance Helioseismology Measurements
arXiv:0802.3866 · doi:10.1086/533495
Abstract
By analyzing numerically simulated solar oscillation data, we study the influence of non-uniform distribution of acoustic wave amplitude, acoustic source strength, and perturbations of the sound speed on the shifts of acoustic travel times measured by the time-distance helioseismology method. It is found that for short distances, the contribution to the mean travel time shift caused by non-uniform distribution of acoustic sources in sunspots may be comparable to (but smaller than) the contribution from the sound speed perturbation in sunspots, and that it has the opposite sign to the sound-speed effect. This effect may cause some underestimation of the negative sound-speed perturbations in sunspots just below the surface, that was found in previous time-distance helioseismology inferences. This effect cannot be corrected by artificially increasing the amplitude of oscillations in sunspots. For large time-distance annuli, the non-uniform distribution of wavefields does not have significant effects on the mean travel times, and thus the sound-speed inversion results. The measured travel time differences, which are used to determine the mass flows beneath sunspots, can also be systematically shifted by this effect, but only in an insignificant magnitude.
16 pages, 6 figures, accepted for publication in ApJ
References in corpus (4)
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Cited by in corpus (5)
- Surface-focused Seismic Holography of Sunspots: I. Observations
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- Origin of the chromospheric three-minute oscillations in sunspot umbrae
- Helioseismic holography of simulated sunspots: magnetic and thermal contributions to travel times
- Dependence of sunspot photospheric waves on the depth of the source of solar modes