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首页> 外文期刊>Astrophysics and Space Science >Galaxy rotation curves: the effect of [(j)vec] ×[(B)vec]vec{j} timesvec{B} force
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Galaxy rotation curves: the effect of [(j)vec] ×[(B)vec]vec{j} timesvec{B} force

机译:星系旋转曲线:[(j)vec]×[((B)vec] vec {j}乘以vec {B}的力的作用)

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摘要

Using the Galaxy as an example, we study the effect of [(j)vec] ×[(B)vec]vec{j} times vec{B} force on the rotational curves of gas and plasma in galaxies. Acceptable model for the galactic magnetic field and plausible physical parameters are used to fit the flat rotational curve for gas and plasma based on the observed baryonic (visible) matter distribution and [(j)vec] ×[(B)vec]vec{j} timesvec{B} force term in the static MHD equation of motion. We also study the effects of varied strength of the magnetic field, its pitch angle and length scale on the rotational curves. We show that [(j)vec] ×[(B)vec]vec{j} timesvec{B} force does not play an important role on the plasma dynamics in the intermediate range of distances 6–12 kpc from the centre, whilst the effect is sizable for larger r (r≥15 kpc), where it is the most crucial.
机译:以银河为例,我们研究了[(j)vec]×[(B)vec] vec {j}乘以vec {B}力对星系中气体和等离子体旋转曲线的影响。基于观测到的重子(可见)物质分布和[[j] vec]×[(Bvec] vec {j],使用银河磁场的可接受模型和合理的物理参数拟合气体和等离子体的平坦旋转曲线。静态MHD运动方程中的timesvec {B}力项。我们还研究了变化的磁场强度,俯仰角和长度比例对旋转曲线的影响。我们证明,[(j)vec]×[(B)vec] vec {j} timesvec {B}力在距中心6–12 kpc的中间范围内对等离子体动力学没有重要作用,而对于较大的r(r≥15kpc),效果是最重要的。

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