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Dispersion relation of modulational instability for one-dimensional standing solitary waves in hot ultrarelativistic electron–positron plasmas

机译:热超级塑性电子正电流中一维站立波的调制不稳定性的分散关系

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In this paper, the non-linear dispersion relation of the system for interactions between high intensity laser and hot relativistic electron–positron plasma is derived. We restrict the problem to the standing solitons in ultrarelativistic plasmas and apply the quasineutrality condition. The modulational instability growth rate for different values of plasma temperatures, velocities and wave numbers are illustrated numerically. It is shown that, by increasing the unperturbed plasma enthalpy, the modulational instability growth rate decreases for all the values of plasma fluid velocities. It is also found that the growth rate shows an increasing trend with plasma fluid velocity. Furthermore, the impact of wave amplitude on the modulational instability growth rate is investigated explicitly. The growth rate increases with wave number as well as wave amplitude.
机译:本文推导出高强度激光和热相对论电子 - 正电流等离子体之间的相互作用的非线性分散关系。 我们将问题限制在超弧度等离子体中的常设孤子,并应用Quasineutrality病症。 数值示出了不同等离子体温度,速度和波数值的调制不稳定生长速率。 结果表明,通过增加不受干扰的等离子体焓,对等离子体液体速度的所有值降低调节不稳定的生长速率。 还发现生长速率显示出血浆液体速度的增加趋势。 此外,明确研究了波振幅对调制不稳定生长速率的影响。 增长速率随波数以及波幅增加而增加。

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