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Helioseismic Holography of Simulated Sunspots: dependence of the travel time on magnetic field strength and Wilson depression

机译:模拟太阳黑子的日震全息图:传播时间对磁场强度和威尔逊凹陷的依赖性

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摘要

Improving methods for determining the subsurface structure of sunspots from their seismic signature requires a better understanding of the interaction of waves with magnetic field concentrations. We aim to quantify the impact of changes in the internal structure of sunspots on local helioseismic signals. We have numerically simulated the propagation of a stochastic wave field through sunspot models with different properties, accounting for changes in the Wilson depression between 250 and 550 km and in the photospheric umbral magnetic field between 1500 and 3500 G. The results show that travel-time shifts at frequencies above approximately 3.50 mHz (depending on the phase-speed filter) are insensitive to the magnetic field strength. The travel time of these waves is determined exclusively by the Wilson depression and sound-speed perturbation. The travel time of waves with lower frequencies is affected by the direct effect of the magnetic field, although photospheric field strengths below 1500 G do not leave a significant trace on the travel-time measurements. These results could potentially be used to develop simplified travel-time inversion methods.
机译:从太阳黑子的地震特征中确定黑子的地下结构的改进方法要求对波与磁场集中的相互作用有更好的了解。我们旨在量化黑子内部结构变化对当地日震信号的影响。我们已经通过具有不同属性的黑子模型对随机波场的传播进行了数值模拟,考虑了250至550 km之间的Wilson凹陷和1500至3500 G之间的光球本影磁场的变化。结果表明,传播时间高于约3.50 mHz的频率上的偏移(取决于相速度滤波器)对磁场强度不敏感。这些波的传播时间完全取决于威尔逊凹陷和声速扰动。低频波的传播时间受磁场的直接影响,尽管低于1500 G的光球场强在传播时间测量中没有留下明显的痕迹。这些结果可能会被用于开发简化的行程时间反演方法。

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