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EFFECT OF CORONAL TEMPERATURE ON THE SCALE OF SOLAR CHROMOSPHERIC JETS

机译:冠冕温度对太阳染色体球尺寸的影响

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We investigate the effect of coronal temperature on the formation process of solar chromospheric jets using two-dimensional magnetohydrodynamic simulations of the region from the upper convection zone to the lower corona. We develop a new radiative magnetohydrodynamic code for the dynamic modeling of the solar atmosphere, employing an LTE equation of state, optically thick radiative loss in the photosphere, optically thin radiative loss in the chromosphere and the corona, and thermal conduction along the magnetic field lines. Many chromospheric jets are produced in the simulations by shock waves passing through the transition region. We find that these jets are projected farther outward when the coronal temperature is lower (similar to that in coronal holes) and shorter when the coronal temperature is higher (similar to that in active regions). When the coronal temperature is high, the deceleration of the chromospheric jets is consistent with the model in which deceleration is determined by the periodic chromospheric shock waves. However, when the coronal temperature is low, the gravitational deceleration becomes more important and the chromospheric jets approach ballistic motion.
机译:我们使用二维磁磁流体动力学模拟从上对流区到下日冕区域研究日冕温度对太阳色球射流形成过程的影响。我们使用LTE状态方程,光层中光学上较厚的辐射损耗,色球层和日冕中较薄的辐射损耗以及沿磁场线的热传导,开发了一种新的辐射磁流体动力学代码,用于对太阳大气进行动态建模。在模拟中,通过过渡区域的冲击波会产生许多色球射流。我们发现,当日冕温度较低时(与日冕孔中的温度相似),这些射流向远处投射,当日冕温度较高时(与活动区中的温度相似),这些射流更短。当日冕温度较高时,色球层射流的减速度与由周期性色球层冲击波确定减速度的模型一致。但是,当日冕温度低时,重力减速变得更加重要,色球层射流接近弹道运动。

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