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Suppressing stimulated Raman side-scattering with vector light

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摘要 Recent observations of stimulated Raman side-scattering(SRSS)in different laser inertial confinement fusion ignition schemes have revealed that there is an underlying risk of SRSS on ignition.In this paper,we propose a method that uses the nonuniform nature of the polarization of vector light to suppress SRSS,and we give an additional threshold condition determined by the parameters of the vector light.For SRSS at 90°,where the scattered electromagnetic wave travels perpendicular to the density profile,the variation in polarization of the pump will change the wave vector of the scattered light,thereby reducing the growth length and preventing the scattered electromagnetic wave from growing.This suppression scheme is verified through three-dimensional particle-in-cell simulations.Our illustrative simulation results demonstrate that for linearly polarized Gaussian light,there is a strong SRSS signal in the 90°direction,whereas for vector light,there is very little SRSS signal,even when the conditions significantly exceed the threshold for SRSS.We also discuss the impact of vector light on stimulated Raman backscattering,collective stimulated Brillouin scattering and two-plasmon decay.
出处 《Matter and Radiation at Extremes》 SCIE EI CSCD 2023年第5期50-56,共7页 极端条件下的物质与辐射(英文)
基金 supported by the Strategic Priority Research Program of the Chinese Academy of Sciences under Grant Nos.XDA25050400 and XDA25010200 the National Natural Science Foundation of China(NSFC)under Grant Nos.12175229 and 11975014.

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