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Effects of Magnetic Fields on Bar Substructures in Barred Galaxies

机译:磁场对禁止星系中的条形结构的影响

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To study the effects of magnetic fields on the properties of bar substructures, we run two-dimensional, ideal MHD simulations of barred galaxies under the influence of a non-axisymmetric bar potential. In the bar regions, magnetic fields reduce density compression in the dust-lane shocks, while removing angular momentum further from the gas at the shocks. This evidently results in a smaller and more distributed ring, and a larger mass inflows rate to the galaxy center in models with stronger magnetic fields. In the outer regions, an MHD dynamo due to the combined action of the bar potential and background shear operates, amplifying magnetic fields near the corotation resonance. In the absence of spiral arms, the amplified fields naturally shape into trailing magnetic arms with strong fields and low density. The reader is refereed to Kim & Stone (2012) for a detailed presentation of the simulation outcomes.
机译:为了研究磁场对条形图性的性质的影响,我们在非轴对称条电位的影响下运行禁止星系的二维理想MHD模拟。在条形区域中,磁场减少了灰尘车道冲击中的密度压缩,同时进一步从震动中进一步从气体中移除角动量。这显然导致较小且分布式的环,并且在具有更强的磁场的模型中对星系中心的较大质量流入率。在外部区域中,由于杆电位和背景剪切的组合动作而导致的MHD发电机,放大函数谐振附近的磁场。在没有螺旋臂的情况下,扩增的场自然地形成具有强大的磁臂的后磁臂和低密度。读者被裁判为Kim&Stone(2012),以便详细介绍模拟结果。

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