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Estimation of Plasma Properties and Magnetic Field in a Prominence-like Structure as Observed by SDO/AIA

机译:SDO / AIA观察到突出状结构中等离子体性能和磁场的估计

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We analyze a prominence-like cool plasma structure as observed by Atmospheric Imaging Assembly (AIA) onboard the Solar Dynamics Observatory (SDO). We perform the Differential Emission Measure (DEM) analysis using various filters of AIA, and also deduce the temperature and density structure in and around the observed flux-tube. In addition to deducing plasma parameters, we also find an evidence of multiple harmonics of fast magnetoacoustic kink waves in the observed prominence-like magnetic structure. Making use of estimated plasma parameters and observed wave parameters, under the baseline of MHD seismology, we deduce magnetic field in the flux-tube. The wave period ratio P1/P2 = 2.18 is also observed in the flux-tube, which carries the signature of magnetic field divergence where we estimate the tube expansion factor as 1.27. We discuss constraints in the estimation of plasma and magnetic field properties in such a structure in the current observational perspective, which may shed new light on the localized plasma dynamics and heating scenario in the solar atmosphere.
机译:我们分析了由大气成像组件(AIA)船上的突出状冷等离子体结构在太阳能动力学天文台(SDO)上观察到。我们使用AIA的各种过滤器进行差分排放量度(DEM)分析,并且还在观察到的磁通管内和周围推导出温度和密度结构。除了推出等离子体参数之外,还可以找到观察到的突出磁性结构中的快速磁声扭光波的多种谐波的证据。利用估计的等离子体参数和观察波参数,在MHD地震学的基线下,我们将磁场推向磁通管中。在磁通管中也观察到波周周期比P1 / P2 = 2.18,其携带磁场发散的签名,在那里我们估计管膨胀因子为1.27。我们在当前观察角度下讨论在这种结构中估计等离子体和磁场特性的约束,这可以在太阳能大气中揭示局部等离子体动力学和加热场景的新光。

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