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Nonlocal radiative forces in fully-ionized plasmas

机译:全电离等离子体中的非局部辐射力

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The solution of the Fokker-Planck equation which contains the contribution of high-frequency electric fields is presented. For this, the projection operators of the Krook collision operator and the semicollisional propagator computed with the continued fractions were used. Both elastic and inelastic momentum transfer from the high-frequency electric field to electrons have been considered. The contributions of such high-frequency electric fields to the stress tensor and to the mean change of momentum due to electron-ion collisions are derived in the whole collisionality range. As a result, in the collisionless range, these contributions led to a new force which is 1.6 (instead of 4/3) more important than the Miller force. In the collisional range, the radiative force due to the inverse bremsstrahlung absorption is recovered and a new contribution which arises from the mean change of momentum due to collisions is found. (C) 2000 American Institute of Physics. [S1070-664X(00)01802-4]. [References: 21]
机译:提出了包含高频电场影响的Fokker-Planck方程的解。为此,使用了Krook碰撞算子的投影算子和用连续分数计算的半碰撞传播子。已经考虑了从高频电场到电子的弹性和非弹性动量传递。在整个碰撞范围内,得出了这种高频电场对应力张量和由于电子-离子碰撞引起的动量平均变化的贡献。结果,在无碰撞范围内,这些贡献导致了比米勒力重要的新力1.6(而不是4/3)。在碰撞范围内,由于反向致辐射吸收而产生的辐射力得以恢复,并且发现了由于碰撞引起的动量平均变化而产生的新贡献。 (C)2000美国物理研究所。 [S1070-664X(00)01802-4]。 [参考:21]

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