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Backscattering of ultrashort high intensity laser pulses from solid targets at oblique incidence

机译:倾斜入射时来自固体靶的超短高强度激光脉冲的反向散射

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摘要

Backreflection of short, intense laser pulses at oblique incidence on solid targets is explained with a model where a periodic electron density modulation acts as a diffraction grating. The pump and reflected electromagnetic waves drive through the ponderomotive force the grating, and the coupled system becomes parametrically unstable. The basic equations governing this situation are given. A linearized stability analysis is used to obtain the instability growth rate in a homogeneous plasma and the convective gain coefficients for the inhomogeneous case. The results support the feasibility of the suggested mechanism. An absolute instability is predicted to set on at a threshold intensity of about 10(16) W/cm(2) for a typical laser pulse with a length of 100 fs and a spot size of 30 mum. The instability is shown to saturate at a level of a few percent, because the higher harmonics in the electron density modulation make the diffraction more diffuse, thus reducing both the ponderomotive force and the backreflection coefficient. (C) 2002 American Institute of Physics. [References: 14]
机译:用一个模型解释了短而强的激光脉冲在斜入射到固体靶上时的后向反射,在该模型中,周期性电子密度调制充当衍射光栅。泵浦的电磁波和反射的电磁波通过质子动力驱动光栅,耦合系统变得参数不稳定。给出了控制这种情况的基本方程式。线性化稳定性分析用于获得均质等离子体中的不稳定性增长率和非均质情况下的对流增益系数。结果支持了该机制的可行性。对于长度为100 fs,光斑尺寸为30 mum的典型激光脉冲,预计绝对不稳定性的阈值强度为10(16)W / cm(2)。由于电子密度调制中的高次谐波使衍射更加扩散,因此不稳定程度达到了百分之几的饱和状态,从而降低了质动力和后向反射系数。 (C)2002美国物理研究所。 [参考:14]

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