论文标题
太阳场对流的空间尺度和时间变化
Spatial Scales and Time Variation of Solar Subsurface Convection
论文作者
论文摘要
对使用时间距离的热态学技术构建的地下流量图进行了太阳次层对流的空间结构的光谱分析。源数据是从2010年5月至9月的Helioseis震(HMI)太阳能动力学天文台(SDO)获得的。球形谐波变换应用于从0到19〜mm的深度处的水平速度差异场。随着深度的增加,在浅层层中的流量尺度范围相当宽。水平流量尺度随着深度的深度迅速增加,从超级颗粒到巨型细胞值,并表明在近表面剪切层中存在大规模的对流运动。该结果自然可以用不同深度间隔的不同规模流的叠加来解释。深层层中有子午线的(香蕉形)对流结构的出现趋势。对流流的总功率与浅层地下层的太阳活性周期的黑子数变化是反相关的,并在较大的深度处正相关,这暗示着由于磁场的作用而导致对流流量的深度再分布。
Spectral analysis of the spatial structure of solar subphotospheric convection is carried out for subsurface flow maps constructed using the time--distance helioseismological technique. The source data are obtained from the Helioseismic and Magnetic Imager (HMI) onboard Solar Dynamics Observatory (SDO) from 2010 May to 2020 September. A spherical-harmonic transform is applied to the horizontal-velocity-divergence field at depths from 0 to 19~Mm. The range of flow scales is fairly broad in shallow layers and narrows as the depth increases. The horizontal flow scales rapidly increase with depth, from supergranulation to giant-cell values, and indicate the existence of large-scale convective motions in the near-surface shear layer. The results can naturally be interpreted in terms of a superposition of differently scaled flows localized in different depth intervals. There is some tendency toward the emergence of meridionally elongated (banana-shaped) convection structures in the deep layers. The total power of convective flows is anticorrelated with the sunspot-number variation over the solar activity cycle in shallow subsurface layers and positively correlated at larger depths, which is suggestive of the depth redistribution of the convective-flow energy due to the action of magnetic fields.