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首页> 外文期刊>The Astrophysical journal >The Accuracy of the Center-of-Gravity Method for Measuring Velocity and Magnetic Field Strength in the Solar Photosphere
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The Accuracy of the Center-of-Gravity Method for Measuring Velocity and Magnetic Field Strength in the Solar Photosphere

机译:重心法在太阳光球中测量速度和磁场强度的准确性

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I investigate the accuracy with which the line-of-sight velocity and magnetic field strength in the solar photosphere can be recovered from spatially resolved spectral line profiles with the center-of-gravity (COG) method. For this purpose, theoretical non-LTE polarized line profiles of a series of Fe I lines were calculated through a two-dimensional slice from a snapshot of a three-dimensional solar magnetoconvection simulation. The calculated profiles were analyzed with the COG method for all positions along the slice, and retrieved values of velocity and field strength were compared with actual values at the heights of formation of the lines. The average formation heights of the employed lines range from 60 to almost 400 km above the average photospheric level. The COG method appears reliable for measuring velocities in the lower half of these formation heights and for measuring field strength over the whole range of heights, for fields up to intermediate strength. Moreover, it is shown that the COG determination is independent of spectral resolution, making it particularly suitable for applications that require high throughput and a correspondingly large spectral bandpass, such as high spatial resolution observations with a large-diameter telescope. Finally, the effect of broad-angle scattering, which includes a schematic representation of image deterioration through seeing, on the retrieved velocity and field strength was investigated.
机译:我研究了使用重心(COG)方法从空间分辨光谱线轮廓中恢复太阳光球的视线速度和磁场强度的准确性。为此,从二维太阳磁对流模拟的快照中通过二维切片,计算了一系列Fe I线的理论非LTE极化线轮廓。使用COG方法对沿切片的所有位置分析了计算出的轮廓,并将速度和场强的取回值与线形成高度处的实际值进行了比较。所采用线的平均地层高度在平均光球面高度以上60至近400 km的范围内。对于测量这些地层高度下半部分的速度,以及测量整个高度范围内的场强(直至中等强度的场),COG方法似乎都是可靠的。此外,已表明COG的确定与光谱分辨率无关,这使其特别适合于需要高通量和相应大光谱带通的应用,例如使用大口径望远镜进行高空间分辨率的观测。最后,研究了广角散射对检索到的速度和场强的影响,广角散射包括通过观察看到的图像劣化的示意图。

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