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Instabilities and generation of a quasistationary magnetic field by the interaction of relativistically intense electromagnetic wave with a plasma

机译:相对论强电磁波与等离子体的相互作用导致准静态磁场的不稳定性和产生

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It is shown that the interaction of the superstrong laser radiation with an isotropic plasma leads to the generation of low frequency electromagnetic (EM) waves and in particular a quasistationary magnetic field. When the relativistic circularly polarized transverse EM wave propagates along z -axis, it creates a ponderomotive force, which affects the motion of particles along the direction of its propagation. On the other hand, motion of the particles across the direction of propagation is defined by the ponderomotive potential. The dispersion relation for the transverse EM wave using a special distribution function, which has an anisotropic form, is derived. The dispersion relation is subsequently investigated for a number of special cases. In general, it is shown that the growth rate of the EM wave strongly depends upon its intensity.
机译:已经表明,超强激光辐射与各向同性等离子体的相互作用导致产生低频电磁(EM)波,尤其是准静态磁场。当相对论圆极化横向EM波沿z轴传播时,它会产生质动力,这会影响粒子沿其传播方向的运动。另一方面,粒子沿传播方向的运动是由质子势确定的。推导了具有特殊形式的各向异性分布的横向EM波的色散关系。随后针对许多特殊情况研究了色散关系。通常,可以看出,EM波的增长率很大程度上取决于其强度。

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