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Numerical simulation of short laser pulse relativistic self-focusing in underdense plasma

机译:稀疏等离子体中短激光脉冲相对论自聚焦的数值模拟

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Existing experimental results on relativistic self-focusing are interpreted by means of the particle code WAKE using the ponderomotive approximation to describe the laser-plasma interaction [P. Mora and T. M. Antonsen, Jr., Phys. Plasmas 4, 217 (1997)]. Novel features of the code, such as gas medium ionization and an enhanced paraxial approximation, allow more confidence in data interpretation. Simulations where the pulse power is less or close to the critical value match the experimental data. The transmitted pulse spectrum is shown in this case to shift towards longer wavelengths. The pulse is shown to focus over the vacuum diffraction limit, while the energy is slowly depleted. Simulations of pulses above the critical power match experiment with reduced precision. This can be ascribed to beam filamentation. High energy depletion is expected in this case due to Raman instability. (C) 1998 American Institute of Physics. [S1079-664X(48)01809-6] [References: 38]
机译:相对论性自聚焦的现有实验结果通过粒子编码WAKE来解释,其中使用了质子逼近来描述激光-等离子体相互作用[P. P. 1989]。 Mora和T.M. Antonsen,Jr.,Phys。 Plasmas 4,217(1997)]。该代码的新颖功能(例如气体介质电离和增强的近轴近似)使人们对数据解释更有信心。脉冲功率小于或接近临界值的仿真与实验数据匹配。在这种情况下,显示出透射的脉冲光谱向更长的波长偏移。脉冲被显示为聚焦在真空衍射极限之上,而能量逐渐耗尽。临界功率匹配以上的脉冲模拟会降低精度。这可以归因于束丝。在这种情况下,由于拉曼不稳定性,预计会有很高的能量消耗。 (C)1998美国物理研究所。 [S1079-664X(48)01809-6] [参考:38]

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