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Generation of terahertz radiation by beating of two circular flat-topped laser beams in collisional plasma

机译:通过碰撞等离子体中的两个圆形平顶激光束产生太赫兹辐射

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摘要

This paper presents a scheme of terahertz (THz) radiation generation based on beating of two flat-topped laser beams by different frequencies and the same electric field amplitudes in actual plasma with spatially periodic density that electron-neutral collisions have been taken into account. Flat-topped laser beams have the exclusive features such as steep gradient in distribution of laser intensities, wider cross-section in comparison with other profiles, which make stronger ponderomotive force and lead to stronger nonlinear current and hence, THz radiation of higher field. The effects of laser and plasma parameters on THz radiation generation are investigated analytically. It is shown that by increasing the order of flatness of incident laser beams, because of their steep gradient, good enhancement in emitted THz radiation take place. It can be deduced that by increasing beating frequency, efficiency of THz generation decreases which can be compensated by manipulating in density ripple magnitudes. The intensity of the emitted radiations is found to be highly sensitive to the order of flatness. Based on the results of this paper, optimization of laser and plasma parameters can increase the efficiency of THz radiation generation strongly.
机译:本文提出了一种太赫兹(THz)辐射生成方案,该方案基于两个平顶的激​​光束在实际等离子体中具有不同的频率和相同的电场振幅,并且在考虑到电子中性碰撞的情况下具有周期性的空间密度。平顶激光束具有独有的特征,例如激光强度分布中的梯度较陡,与其他轮廓相比具有更宽的横截面,这使得磁致动力更强,并导致更强的非线性电流,从而产生更高场的太赫兹辐射。分析研究了激光和等离子体参数对太赫兹辐射产生的影响。通过增加入射激光束的平坦度,可以看出,由于其陡峭的梯度,发射的太赫兹辐射得到了很好的增强。可以推断出,通过增加拍频,可以降低THz产生的效率,这可以通过控制密度波动幅度来补偿。发现发射辐射的强度对平坦度高度敏感。根据本文的结果,优化激光和等离子体参数可以大大提高太赫兹辐射的产生效率。

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