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Plasma induced smoothing of a spatially incoherent laser beam and reduction of backward stimulated Brillouin scattering

机译:等离子体诱导空间不相干激光束的平滑并减少向后激发的布里渊散射

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摘要

The angular divergence and spectral bandwidth of a spatially incoherent laser beam propagating in an underdense plasma are shown to correspond to additional spatial and temporal incoherence in the regime where the average laser intensity in a speckle approaches the self-focusing threshold. The transverse and longitudinal sizes of laser speckles inside the plasma are related in a way that makes it possible to define a local effective beam f-number. The effective f-number decreases as light propagates through the plasma, and the effective f-number at the outgoing boundary is consistent with the transmitted light angular spreading. The spectral broadening and red shift of the transmitted light are interpreted as a result of multiple near-forward stimulated Brillouin scattering of the propagating laser beam. The reduction of backward stimulated Brillouin scattering follows from decrease of the effective speckle length and from the plasma induced temporal incoherence. (C) 2001 American Institute of Physics. [References: 34]
机译:在低密度等离子体中传播的空间不相干激光束的角发散和光谱带宽显示为对应于散斑中平均激光强度接近自聚焦阈值的区域中的其他空间和时间不相干。等离子体内部的激光散斑的横向和纵向尺寸以可以定义局部有效光束f值的方式相关。随着光传播通过等离子体,有效f值减小,并且出射边界处的有效f值与透射光角展度一致。传输光的光谱展宽和红移被解释为传播激光束的多次近前受激布里渊散射所致。向后受激布里渊散射的减少是由于有效散斑长度的减少和等离子体引起的时间不相干引起的。 (C)2001美国物理研究所。 [参考:34]

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