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Spiral Magneto-Electron Waves in Interstellar Gas Dynamics

机译:星际气体动力学中的螺旋电磁波

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We discuss possible observational consequences resulting from the propagation of transverse magneto-electron waves in the interstellar medium. We briefly describe a magnetohydrodynamic model for the cyclotron waves with emphasis on their analogy with hydrodynamic inertial waves. it is shown that the cyclotron waves are heavily damped in the interstellar medium and, therefore, cannot affect the gas dynamics of star-forming molecular clouds. We developed an analytical model of the helicoidal magneto-electron waves based on the electromagnetic induction equation for the magnetic flux density driven by the Hall and Ohmic components of the electric field generated by flows of thermal electrons. It is established that the helicons can propagate in the interstellar medium without any noticeable attenuation. The presented numerical estimates for the group velocity of the intercloud helicons suggest that spiral circularly polarized magneto-electron waves of this type can be responsible for the broadening of molecular lines detected from dark interstellar clouds.
机译:我们讨论了星际介质中横向磁电子波的传播可能产生的观测结果。我们简要描述回旋加速器波的磁流体动力学模型,重点是其与流体动力惯性波的类比。结果表明,回旋加速器波在星际介质中被大量衰减,因此不会影响形成恒星的分子云的气体动力学。我们基于电磁感应方程式开发了螺旋形电磁波的解析模型,该方程式是由热电子流产生的电场的霍尔和欧姆分量驱动的磁通密度。可以确定,直升飞机可以在星际介质中传播而没有任何明显的衰减。提出的关于云间直角形子群速度的数值估计表明,这种类型的螺旋圆极化磁电子波可以导致从暗星际云中检测到的分子线变宽。

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