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Electron spin-interaction effects on the ponderomotive magnetization and radiation in degenerate quantum plasmas

机译:电子自旋相互作用对简并量子等离子体中磁致磁化和辐射的影响

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摘要

The spin interaction effects on the Karpman-Washimi ponderomotive magnetization are investigated in quantum plasmas. The induced Karpman-Washimi magnetization and cyclotron frequency due to the ponderomotive interaction are obtained as functions of the electron quantum wave length, Fermi wave number, wave frequency, and wave number. It is found that the spin interaction correction significantly enhances the Karpman-Washimi magnetization. It is also found the Karpman-Washimi magnetization increases with increasing Fermi wave number. In addition, it is found that the spin correction effect strongly enhances the radiation spectrum. It would be expected that the Karpman-Washimi interaction can be a possible terahertz radiation mechanism in a quantum plasma.
机译:在量子等离子体中研究了自旋相互作用对Karpman-Washimi磁致磁化的影响。由于电子势相互作用而产生的感应卡普曼-瓦希米磁化强度和回旋频率是电子量子波长,费米波数,波频率和波数的函数。发现自旋相互作用校正显着增强了Karpman-Washimi磁化强度。还发现,随着费米波数的增加,卡普曼-瓦希米的磁化强度增加。另外,发现自旋校正效果极大地增强了辐射光谱。可以预期,Karpman-Washimi相互作用可能是量子等离子体中可能的太赫兹辐射机理。

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