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Spatio-temporal evolution of two-plasmon decay in homogeneous plasma

机译:均质等离子体中两等离激元衰变的时空演化

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A hydrodynamic model of two-plasmon decay in a homogeneous plasma slab near the quarter-critical density is utilized to study the spatio-temporal evolution of the daughter electron plasma waves in plasma in the course of the instability. The influence of laser and plasma parameters on the evolution of the amplitudes of the participating waves is discussed, assuming that the secondary coupling of two daughter electron plasma waves with an ion-acoustic wave is the principal mechanism of saturation of the instability. The impact of inherently non-resonant nature of this secondary coupling on the development of TPD is investigated for the first time and it is shown to significantly influence the electron plasma wave dynamics. Its inclusion leads to non-uniformity of the spatial profile of the instability and causes the burst-like pattern of the instability development, which should result in the burst-like hot-electron production in homogeneous plasma.
机译:利用在四分之一临界密度附近的均质等离子体平板中的两个等离子体激元衰减的流体力学模型,研究了在不稳定过程中等离子体中子电子等离子体波的时空演化。假设两个子电子等离子体波与离子声波的二次耦合是不稳定性饱和的主要机理,讨论了激光和等离子体参数对参与波幅度演化的影响。首次研究了这种次级耦合固有的非共振性质对TPD的发展的影响,并显示出它显着影响电子等离子体波动力学。它的包含导致不稳定的空间分布不均匀,并导致不稳定发展的爆发状模式,这将导致在均匀等离子体中产生爆发状热电子。

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