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Estimating the magnetic field strength from magnetograms

机译:从磁图估计磁场强度

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摘要

A properly calibrated longitudinal magnetograph is an instrument that measures circular polarization and gives an estimation of the magnetic flux density in each observed resolution element. This usually constitutes a lower bound of the field strength in the resolution element, given that it can be made arbitrarily large as long as it occupies a proportionally smaller area of the resolution element and/or becomes more transversal to the observer while still produce the same magnetic signal. However, we know that arbitrarily stronger fields are less likely – hG fields are more probable than kG fields, with fields above several kG virtually absent – and we may even have partial information about their angular distribution. Based on a set of sensible considerations, we derive simple formulae based on a Bayesian analysis to give an improved estimation of the magnetic field strength for magnetographs.
机译:正确校准的纵向磁强计是一种测量圆极化并估计每个观察到的分辨率元素中的磁通密度的仪器。这通常构成分辨率元素中场强的下限,只要可以将其任意增大即可,只要它占据比例缩小的比例区域和/或对观察者而言是横向的,同时仍然产生相同的分辨率磁信号。但是,我们知道,任意强场的可能性都较小-hG场比kG场更有可能,几乎不存在几kG以上的场-甚至我们可能还可以获得有关其角度分布的部分信息。基于一系列合理的考虑,我们基于贝叶斯分析得出了简单的公式,以便对磁强计的磁场强度进行改进的估算。

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