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首页> 外文期刊>The Astrophysical journal >MAGNETOHYDRODYNAMIC SIMULATIONS OF THE FORMATION OF COLD FRONTS IN CLUSTERS OF GALAXIES INCLUDING HEAT CONDUCTION
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MAGNETOHYDRODYNAMIC SIMULATIONS OF THE FORMATION OF COLD FRONTS IN CLUSTERS OF GALAXIES INCLUDING HEAT CONDUCTION

机译:包括热传导在内的星系团中冷前锋形成的磁流体动力学模拟

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摘要

Recent Chandra observations of clusters of galaxies revealed the existence of a sharp ridge in the X-ray surface brightness where the temperature drops across the front. This front is called the cold front. We present the results of two-dimensional magnetohydrodynamic simulations of the time evolution of a dense subcluster plasma moving in a cluster of galaxies. Anisotropic heat conduction along the magnetic field lines is included. In the models without magnetic fields, the numerical results indicate that the heat conduction from the hot ambient plasma heats the cold dense plasma of the subcluster and diffuses out the cold front. When magnetic fields exist in a cluster of galaxies, however, cold fronts can be maintained because the heat conduction across the magnetic field lines is suppressed. We found that even when the magnetic fields in a cluster of galaxies are disordered, heat conduction across the front is restricted because the magnetic field lines are stretched along the front. Numerical results reproduced the X-ray intensity distribution observed in the A3667 cluster of galaxies.
机译:Chandra最近对星系团的观测表明,X射线表面亮度中存在一个锋利的脊,温度在整个前部下降。该前沿称为冷锋。我们提出了一个密集的亚簇等离子体在星系团中移动的时间演化的二维磁流体动力学模拟结果。包括沿着磁场线的各向异性热传导。在没有磁场的模型中,数值结果表明,来自高温环境等离子体的热传导加热了子簇的冷致密等离子体,并向冷锋扩散。但是,当星系团中存在磁场时,由于可以抑制跨磁场线的热传导,因此可以保持冷锋。我们发现,即使当星系团中的磁场混乱时,由于磁场线沿前部拉伸,因此前部的热传导也受到限制。数值结果再现了在A3667星系团中观察到的X射线强度分布。

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