论文标题

等离子体介导的电子束在量子等离子体中

Plasmon Mediated Electron Beam Transport in Quantum Plasma

论文作者

Akbari-Moghanjoughi, M.

论文摘要

从量子流体动力学模型开始转换为耦合驱动的伪型系统,研究了具有任意退化程度的电子束的等离子体激发。使用常规的正常模式分析,开发了单色电子束的双长度尺度波函数理论。梁等离子体激发既具有波浪和粒子特征,de broglie vavenumbers均取决于各种参数,例如平均光束速度,化学电位,电荷筛选和背景静电能。使用双波长静电势能研究了光束中的确定性单电子动力学。结果表明,根据环境等离子体参数值,电子可以被困或沿着梁方向行驶。研究了单色光束通过二进制和三元金属构型传输的问题,并指出了这些系统的某些技术应用。该理论扩展到通过多媒体连接的多发式现象和电子束传输。我们认为,当前的研究可能会对对量子束相互作用和不稳定性的理解产生重大影响,并可以进一步阐明涉及集体量子波粒子现象的机制。

Starting from the quantum hydrodynamic model and transforming to the coupled driven pseudoforce system the plasmonic excitations of electron beam with arbitrary degree of degeneracy are studied. Using the conventional normal-mode analysis a dual-length-scale wavefunction theory for a monochromatic electron beam is developed. The beam plasmon excitations are shown to have both wave and particle character, de Broglie wavenumbers of which depend on various parameters such as average beam speed, the chemical potential, the charge screening and the background electrostatic energy. The deterministic single electron dynamics in the beam is investigated using the dual-wavelength electrostatic potential energy. It is shown that electrons can be either trapped or traveling along the beam direction depending on the ambient plasma parameter values. The problem of monochromatic beam transport through binary as well as ternary metallic configurations are investigated and some technological applications of these system are pointed out. The theory is extended to multistream phenomenon and electron beam transport through multimedia junction. We believe that current study can have major impact on understanding of the quantum beam-plasma interactions and instabilities and can further elucidate the mechanisms involving in the collective quantum wave-particle phenomena.

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