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首页> 外文期刊>Solar physics >High-resolution mapping of flows in the solar interior: Fully consistent OLA inversion of helioseismic travel times
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High-resolution mapping of flows in the solar interior: Fully consistent OLA inversion of helioseismic travel times

机译:太阳内部流的高分辨率映射:日震传播时间的OLA反转完全一致

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摘要

To recover the flow information encoded in travel-time data of time-distance helioseismology, accurate forward modeling and a robust inversion of the travel times are required. We accomplish this using three-dimensional finite-frequency travel-time sensitivity kernels for flows along with a (2+1)-dimensional (2+1D) optimally localized averaging (OLA) inversion scheme. Travel times are measured by ridge filtering MDI full-disk Doppler data and the corresponding Born sensitivity kernels are computed for these particular travel times. We also utilize the full noise-covariance properties of the travel times, which allow us to accurately estimate the errors for all inversions. The whole procedure is thus fully consistent. Because of ridge filtering, the kernel functions separate in the horizontal and vertical directions, motivating our choice of a 2+1D inversion implementation. The inversion procedure also minimizes cross-talk effects among the three flow components, and the averaging kernels resulting from the inversion show very small amounts of cross-talk. We obtain three-dimensional maps of vector solar flows in the quiet Sun at horizontal spatial resolutions of 7-10 Mm using generally 24 hours of data. For all of the flow maps we provide averaging kernels and the noise estimates. We present examples to test the inferred flows, such as a comparison with Doppler data, in which we find a correlation of 0.9. We also present results for quiet-Sun supergranular flows at different depths in the upper convection zone. Our estimation of the vertical velocity shows good qualitative agreement with the horizontal vector flows. We also show vertical flows measured solely from f-mode travel times. In addition, we demonstrate how to directly invert for the horizontal divergence and flow vorticity. Finally we study inferred flow-map correlations at different depths and find a rapid decrease in this correlation with depth, consistent with other recent local helioseismic analyses.
机译:为了恢复在时-时地震学的传播时间数据中编码的流量信息,需要精确的正演模型和传播时间的鲁棒反演。我们使用针对流的三维有限频率传播时间敏感度内核以及(2 + 1)维(2 + 1D)最佳局部平均(OLA)反演方案来实现此目的。通过脊过滤MDI全盘多普勒数据来测量传播时间,并针对这些特定传播时间计算相应的Born敏感性内核。我们还利用了传播时间的全部噪声-协方差特性,这使我们能够准确估计所有反演的误差。因此,整个过程是完全一致的。由于采用了脊线滤波,内核功能在水平和垂直方向上是分开的,这促使我们选择2 + 1D反演实现。反转过程还将三个流分量之间的串扰影响最小化,并且由反转产生的平均内核显示出非常少的串扰。我们通常使用24小时的数据,获得7-10 Mm的水平空间分辨率下的安静太阳中矢量太阳流的三维地图。对于所有流程图,我们提供平均内核和噪声估计。我们提供了一些示例来测试推断的流量,例如与多普勒数据进行比较,发现相关性为0.9。我们还介绍了上部对流区不同深度的静太阳超颗粒流的结果。我们对垂直速度的估计显示出与水平矢量流的良好定性一致性。我们还显示了仅根据f模式行程时间测得的垂直流。此外,我们演示了如何直接反转水平散度和流动涡度。最后,我们研究了在不同深度的推断流图相关性,并发现这种相关性随深度而迅速减小,这与其他最近的局部日震分析相一致。

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