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2D non-LTE modelling of a filament observed in the H α line with the DST/IBIS spectropolarimeter

机译:使用DST / IBIS分光旋光计在H α线中观察到的灯丝的二维非LTE建模

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Context. We study a fragment of a large quiescent filament observed on May 29, 2017 by the Interferometric BIdimensional Spectropolarimeter (IBIS) mounted at the Dunn Solar Telescope. We focus on its quiescent stage prior to its eruption. Aims. We analyse the spectral observations obtained in the H α line to derive the thermodynamic properties of the plasma of the observed fragment of the filament. Methods. We used a 2D filament model employing radiative transfer computations under conditions that depart from the local thermodynamic equilibrium. We employed a forward modelling technique in which we used the 2D model to produce synthetic H α line profiles that we compared with the observations. We then found the set of model input parameters, which produces synthetic spectra with the best agreement with observations. Results. Our analysis shows that one part of the observed fragment of the filament is cooler, denser, and more dynamic than its other part that is hotter, less dense, and more quiescent. The derived temperatures in the first part range from 6000 K to 10 000 K and in the latter part from 11 000 K to 14 000 K. The gas pressure is 0.2–0.4 dyn cm~(?2)in the first part and around 0.15 dyn cm~(?2)in the latter part. The more dynamic nature of the first part is characterised by the line-of-sight velocities with absolute values of 6–7 km s~(?1)and microturbulent velocities of 8–9 km s~(?1). On the other hand, the latter part exhibits line-of-sight velocities with absolute values 0–2.5 km s~(?1)and microturbulent velocities of 4–6 km s~(?1).
机译:上下文。我们研究了安装在Dunn太阳望远镜上的干涉式二维分光旋光仪(IBIS)在2017年5月29日观察到的大型静态灯丝的片段。我们将重点放在喷发之前的静止阶段。目的我们分析在Hα线中获得的光谱观察结果,以推导观察到的细丝片段的等离子体的热力学性质。方法。在偏离局部热力学平衡的条件下,我们使用了采用辐射转移计算的二维丝模型。我们采用了一种前向建模技术,其中我们使用了2D模型来生成合成的Hα线轮廓,并将其与观测值进行比较。然后,我们找到了一组模型输入参数,这些参数产生了与观察值最一致的合成光谱。结果。我们的分析表明,所观察到的细丝片段的一部分比其另一部分更热,密度较小且更静态的部分更凉爽,更致密且更具动感。在第一部分中得出的温度为6000 K至10000 K,在第二部分中得出的温度为11000 K至14000K。第一部分中的气压为0.2-0.4 dyn cm〜(?2),约为0.15。 dyn cm〜(?2)在后面。第一部分更具动态性,其特征在于视线速度的绝对值为6–7 km s〜(?1),微湍流速度为8–9 km s〜(?1)。另一方面,后半部分的视线速度绝对值为0-2.5 km s〜(?1),微湍流速度为4-6 km s〜(?1)。

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