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The Solar Rotation in the 1930s from the Sunspot and Flocculi Catalogs of the Ebro Observatory

机译:埃布罗天文台的太阳黑子和Flocculi目录中的1930年代太阳旋转

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The tables of sunspot and flocculi heliographic positions included in the catalogs published by the Ebro Observatory in the 1930s have recently been recovered and converted into digital format by using optical character recognition (OCR) technology. We here analyzed these data by computing the angular velocity of several sunspot and flocculi groups. A difference was found in the rotational velocity for sunspots and flocculi groups at high latitudes, and we also detected an asymmetry between the northern and southern hemispheres, which is especially marked for the flocculi groups. The results were then fitted with a differential-rotation law [] to compare the data obtained with the results published by other authors. A dependence on the latitude that is consistent with former studies was found. Finally, we studied the possible relationship between the sunspot/flocculi group areas and their corresponding angular velocity. There are strong indications that the rotational velocity of a sunspot/flocculi group is reduced (in relation to the differential rotation law) when its maximum area is larger.
机译:埃布罗天文台(Ebro Observatory)在1930年代出版的目录中所包含的黑子和絮凝体平视位置表最近已经恢复,并通过使用光学字符识别(OCR)技术转换为数字格式。我们在这里通过计算几个黑子和絮团的角速度来分析这些数据。在高纬度地区,黑子群和絮状群的旋转速度存在差异,我们还检测到北半球和南半球之间的不对称性,这在絮状群中尤为明显。然后,将结果拟合为微分旋转定律[],以将获得的数据与其他作者发表的结果进行比较。发现对纬度的依赖性与以前的研究一致。最后,我们研究了黑子/絮凝物群面积与其对应角速度之间的可能关系。有强烈的迹象表明,当太阳黑子/絮团的最大面积更大时,其旋转速度会降低(相对于微分旋转定律)。

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