Comparison of solar surface flows inferred from time-distance helioseismology and coherent structure tracking using HMI/SDO observations

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Abstract

We compare measurements of horizontal flows on the surface of the Sun using helioseismic time-distance inversions and coherent structure tracking of solar granules. Tracking provides two-dimensional horizontal flows on the solar surface, whereas the time-distance inversions estimate the full three-dimensional velocity flows in the shallow near-surface layers. Both techniques use Helioseismic and Magnetic Imager observations as input. We find good correlations between the various measurements resulting from the two techniques. Further, we find a good agreement between these measurements and the time-averaged Doppler line-of-sight velocity, and also perform sanity checks on the vertical flow that resulted from the three-dimensional time-distance inversion. © 2013. The American Astronomical Society. All rights reserved.

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Švanda, M., Roudier, T., Rieutord, M., Burston, R., & Gizon, L. (2013). Comparison of solar surface flows inferred from time-distance helioseismology and coherent structure tracking using HMI/SDO observations. Astrophysical Journal, 771(1). https://doi.org/10.1088/0004-637X/771/1/32

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