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Instability of plasma waves caused by incoherent photons in dense plasmas

机译:在稠密等离子体中由非相干光子引起的等离子体波的不稳定性

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We consider the nonlinear instability of modified Langmuir and ion-sound waves caused by partially coherent photons in dense quantum plasmas. In our model, the dynamics of the photons is governed by a wave kinetic equation. The evolution equations for the Langmuir and ion-sound waves are deduced from the quantum hydrodynamic equations accounting for the incoherent photon pressure, the quantum statistical electron pressure, and the quantum Bohm force acting on the degenerate electrons. The governing equations are Fourier analyzed to obtain nonlinear dispersion relations. The latter are analyzed to predict instability of the modified Langmuir and ion-sound waves in the presence of partially coherent photons. Possible applications of our investigation to the next generation of intense laser-solid dense plasma experiments and compact dense astrophysical bodies are mentioned.
机译:我们考虑了稠密量子等离子体中部分相干光子引起的改性朗格缪尔和离子声波的非线性不稳定性。在我们的模型中,光子的动力学受波动动力学方程支配。由考虑非相干光子压力,量子统计电子压力和作用在简并电子上的量子欧姆力的量子流体力学方程,推导出了朗缪尔波和离子声波的演化方程。对控制方程进行傅立叶分析以获得非线性色散关系。分析后者以预测在部分相干光子的存在下改性朗缪尔波和离子声波的不稳定性。提到了我们的研究在下一代强激光-固体致密等离子体实验和致密致密天体中的可能应用。

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