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Beat wave excitation of electron plasma wave by relativistic cross focusing of cosh-Gaussian laser beams in plasma

机译:等离子体中Cosh-Gaussian光束的相对论交叉聚焦对电子等离子体波的拍波激发

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摘要

A scheme for beat wave excitation of electron plasma wave (EPW) is proposed by relativistic cross-focusing of two coaxial Cosh-Gaussian (ChG) laser beams in an under dense plasma. The plasma wave is generated on account of beating of two coaxial laser beams of frequencies omega(1) and omega(2). The mechanism for laser produced nonlinearity is assumed to be relativistic nonlinearity in electron mass. Following moment theory approach in Wentzel Kramers Brillouin (W.K.B) approximation, the coupled differential equations governing the evolution of spot size of laser beams with distance of propagation have been derived. The relativistic nonlinearity depends not only on the intensity of first laser beam but also on the intensity of second laser beam. Therefore, propagation dynamics of one laser beam affect that of second beam and hence cross-focusing of the two laser beams takes place. Due to non uniform intensity distribution of pump laser beams, the background electron concentration gets modified. The amplitude of EPW, which depends on the background electron concentration, thus gets nonlinearly coupled with the laser beams. The effects of relativistic electron mass nonlinearity and the cross-focusing of pump beams on excitation of EPW have been incorporated. Numerical simulations have been carried out to investigate the effect of laser as well as plasma parameters on cross-focusing of laser beams and further its effect on power of excited EPW. (C) 2015 AIP Publishing LLC.
机译:通过在致密等离子体中对两个同轴Cosh-Gaussian(ChG)激光束进行相对论性交叉聚焦,提出了一种电子等离子体波(EPW)的拍波激励方案。由于打败了频率为omega(1)和omega(2)的两个同轴激光束而产生了等离子体波。假定激光产生的非线性机制是电子质量的相对论非线性。遵循Wentzel Kramers Brillouin(W.K.B)近似中的矩理论方法,已经得出了控制激光束光斑尺寸随传播距离演变的耦合微分方程。相对论非线性不仅取决于第一激光束的强度,还取决于第二激光束的强度。因此,一个激光束的传播动力学影响第二个激光束的传播动力学,因此发生了两个激光束的交叉聚焦。由于泵浦激光束的强度分布不均匀,因此背景电子浓度发生了变化。 EPW的振幅取决于背景电子浓度,因此与激光束非线性耦合。结合了相对论电子质量非线性和泵浦束的交叉聚焦对EPW激发的影响。已经进行了数值模拟,以研究激光以及等离子体参数对激光束交叉聚焦的影响,以及其对激发的EPW功率的影响。 (C)2015 AIP Publishing LLC。

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