论文标题

等离子体缓慢电磁干扰的传播

Propagation of slow electromagnetic disturbances in plasma

论文作者

Yadav, Sharad Kumar, Bera, Ratan Kumar, Verma, Deepa, Das, Amita, Kaw, Predhiman

论文摘要

电磁(EM)波/干扰通常是理解和分析等离子等电离培养基的最佳手段。但是,频率低于等离子体频率的电磁波的传播被血浆的自由移动电荷所禁止。在密集的等离子体中,尽管血浆频率通常很高,但在如此较高的频率下的EM来源不容易获得。因此,人们很感兴趣的是寻求可能性,其中低频(低于等离子体频率)EM干扰在血浆内部传播。在磁化等离子体的背景下,这是可能的。但是,为了具有磁化等离子体响应,需要一个强大的外部磁场。在本手稿中,我们证明了等离子体介质的非线性也可以帮助血浆中缓慢的EM波的传播。还讨论了这种缓慢的电磁脉冲通过等离子体传播的某些有趣的应用。

Electromagnetic (EM) waves/disturbances are typically the best means to understand and analyze an ionized medium like plasma. However, the propagation of electromagnetic waves with frequency lower than the plasma frequency is prohibited by the freely moving charges of the plasma. In dense plasmas though the plasma frequency can be typically quite high, EM sources at such higher frequency are not easily available. It is, therefore, of interest to seek possibilities wherein a low frequency (lower than the plasma frequency) EM disturbance propagates inside a plasma. This is possible in the context of magnetized plasmas. However, in order to have a magnetized plasma response one requires a strong external magnetic field. In this manuscript we demonstrate that the nonlinearity of the plasma medium can also aid the propagation of a slow EM wave inside plasma. Certain interesting applications of the propagation of such slow electromagnetic pulse through plasma is also discussed.

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