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Study on influence of different valence state under same particles on electromagnetic radiation in beam-plasma system

机译:相同质点下不同价态对电子束等离子体系统电磁辐射的影响研究

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Summary form only given. When an intense relativistic electron beam propagates through the plasma background, the electron beam can expel the plasma electrons and leave the plasma ions which can be seen as static. In this process, the ion channel can be formed and the electromagnetic radiation can be observed. This paper uses the method called particle-in-cell to study on the influence of different valence state under same particles on electromagnetic radiation in beam-plasma system.transverse oscillations have been observed, which will be the basis of the electromagnetic radiation in the beam-plasma system. At the same time, it is also observed that most electrons have given out its energy. In the simulation, the Aluminum element has been used. When one outermost electron of Aluminum atoms is lost, the observed electromagnetic radiation frequency is 0.9035THz. And when two outermost electrons of the Aluminum atoms are lost, the observed electromagnetic radiation frequency is 1.197THz. The observed electromagnetic radiation frequency is 1.465 THz when all the outermost electrons are lost. The conclusion is that higher valence state means higher electron density in the beam-plasma system, which leads to higher electromagnetic radiation frequency.
机译:仅提供摘要表格。当强相对论电子束传播通过等离子体背景时,电子束可以排出等离子体电子并离开等离子体离子,该离子被视为静态离子。在此过程中,可以形成离子通道并可以观察到电磁辐射。本文采用细胞内粒子法研究了相同粒子下不同价态对束流等离子体系统电磁辐射的影响,观察到了横向振荡,将其作为束流电磁辐射的基础。 -等离子体系统。同时,还观察到大多数电子已经释放出其能量。在模拟中,使用了铝元素。当铝原子的最外层电子丢失时,观察到的电磁辐射频率为0.9035THz。并且当铝原子的两个最外层电子丢失时,观察到的电磁辐射频率为1.197THz。当所有最外面的电子都丢失时,观察到的电磁辐射频率为1.465 THz。结论是,更高的价态意味着束流等离子体系统中的电子密度更高,从而导致更高的电磁辐射频率。

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