摘要
定义了相对论磁化运动等离子体(MMP)的物理模型。利用微扰理论导出了系统的介电张量,研究发现,MMP具有完全不同于静态磁化等离子体介电张量的形式。对电磁波沿轴向传播的情况进行了数值模拟计算,结果表明,系统的共振频率随等离子体密度的增加而非线性增加,在相同的条件下,右旋波的共振频率高于左旋波的共振频率。对于传播的右旋电磁波,增加纵向磁场,共振频率提高,而对于左旋电磁波,增加纵向磁场,共振频率降低。
The physical model of magnetic motional plasma (MMP) is defined. Adopting method of perturbation theory dielectric tensor of the system is derived, MMP shows a completely different form of the dielectric tensor with the static magnetic plasma. The results, given by numerical computation for propagating longitudinal wave, reveal that resonant frequency of the system nonlinearly enhance with the increasing of plasma density.At the same conditions resonant frequency of dextral wave is higher than that of sinistral wave, The resonant frequency of the system increase for the propagating dextral electromagnetic wave with longitudinal magnetic field, but descends for the sinistral one.
出处
《强激光与粒子束》
EI
CAS
CSCD
北大核心
2004年第4期509-513,共5页
High Power Laser and Particle Beams
基金
霍英东青年教师基金资助课题(81007)
关键词
荷流体
介电张量
磁化运动等离子体
流体理论
Charge fluid
Dielectric tensor
Magnetic motional plasma
Fluid theory