论文标题
磁敏感的禁止冠状线的有效和自动反转:CLEDB-冠状线发射数据库磁场反转算法
Efficient and Automated Inversions of Magnetically-Sensitive Forbidden Coronal Lines: CLEDB -- The Coronal Line Emission DataBase Magnetic Field Inversion Algorithm
论文作者
论文摘要
我们提出了CLEDB,这是一种使用I,Q,U和V stokes参数推断磁参数的“单点反转”算法,该参数是在太阳能电晕中形成的禁止磁偶极线的参数。我们选择了感兴趣的线,并构建Stokes参数的数据库,以组合血浆热和磁性构型的组合。通过利用对称性,大大降低了此类数据库的大小和复杂性。使用波长集成线轮廓,每个轮廓可能事先将其分解为几个视线组件,我们搜索最近的匹配项,以计算出针对与观察到的区域相对应的延伸的观察到的stokes参数。该方法旨在应用于同时观察到的两条或多个线。溶液最初产生磁取向,热性能以及在三个维度上发射等离子体的空间位置。返回每个观察值的多个可能的溶液,包括不可约合的变性,通常两种溶液与两个输入I,Q,U和V测量值兼容。在求解散射几何形状时,此方法避免了Dima&Schad(2020)指出的额外的堕落性。在确定了热性能和散射几何溶液之后,磁场强度从观察到的数据库与Stokes V数据的简单比率分别得出。
We present CLEDB, a "single point inversion" algorithm for inferring magnetic parameters using I,Q,U, and V Stokes parameters of forbidden magnetic dipole lines formed in the solar corona. We select lines of interest and construct databases of Stokes parameters for combinations of plasma thermal and magnetic configurations. The size and complexity of such databases are drastically reduced by taking advantage of symmetries. Using wavelength-integrated line profiles, each of which might be decomposed beforehand into several line-of-sight components, we search for nearest matches to observed Stokes parameters computed for the elongation corresponding to the observed region. The method is intended to be applied to two or more lines observed simultaneously. The solutions initially yield magnetic orientation, thermal properties, and the spatial position of the emitting plasma in three dimensions. Multiple possible solutions for each observation are returned, including irreducible degeneracies, where usually sets of two solutions are compatible with the two input I,Q,U, and V measurements. In solving for the scattering geometry, this method avoids an additional degeneracy pointed out by Dima & Schad (2020). The magnetic field strength is separately derived from the simple ratio of observed to database Stokes V data, after the thermal properties and scattering geometry solutions have been determined.