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首页> 外文期刊>The Astrophysical journal >RELATING CORONAL MASS EJECTION KINEMATICS AND THERMAL ENERGY RELEASE TO FLARE EMISSIONS USING A MODEL OF SOLAR ERUPTIONS
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RELATING CORONAL MASS EJECTION KINEMATICS AND THERMAL ENERGY RELEASE TO FLARE EMISSIONS USING A MODEL OF SOLAR ERUPTIONS

机译:使用太阳喷发模型将冠状物质抛射运动学和热能释放与火炬排放相关

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We use a model of solar eruptions that combines a loss-of-equilibrium coronal mass ejection (CME) model with a multi-threaded flare loop model in order to understand the relationship between the CME kinematics, thermal energy release, and soft X-ray emissions in solar eruptions. We examine the correlation between CME acceleration and the peak soft X-ray flux in many modeled cases with different parameters, and find that the two quantities are well correlated. We also examine the timing of the peak acceleration and the light curve derivative, and find that these quantities tend to peak at similar times for cases where the magnetic field is high and the inflow Alfvén Mach number is fast. Finally, we study the relationship between the total thermal energy released in the model and the calculated peak soft X-ray flux of the resulting flare. We find that there is a power-law relationship between these two quantities, with F peak ~ E α, where α is between 2.54 and 1.54, depending on the reconnection rate. This finding has repercussions for the assumptions underlying the Neupert effect, in which the peak soft X-ray flux is assumed to be proportional to the thermal energy release.
机译:为了了解CME运动学,热能释放和软X射线之间的关系,我们使用了太阳喷发模型,该模型将失衡日冕质量抛射(CME)模型与多线程火炬环模型结合在一起太阳喷发中的排放。我们在许多具有不同参数的建模案例中检查了CME加速度与峰值软X射线通量之间的相关性,发现这两个量之间具有很好的相关性。我们还检查了峰值加速度和光曲线导数的时间,发现在磁场高且流入AlfvénMach数快的情况下,这些量倾向于在相似的时间达到峰值。最后,我们研究了模型中释放的总热能与所得火炬计算出的峰值软X射线通量之间的关系。我们发现这两个量之间存在幂律关系,其中F peak〜Eα,其中α在2.54和1.54之间,具体取决于重新连接速率。这一发现对Neupert效应所依据的假设产生了影响,在该假设中,假定峰值软X射线通量与热能释放成比例。

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