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Analysis of the smoothing performance of a rapid polarization rotation smoothing scheme

机译:快速偏振旋转平滑方案的平滑性能分析

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In order to improve the irradiation uniformity on the target plane and reduce the parametric backscattering in indirect-drive inertial confinement fusion facilities, a rapid polarization rotation smoothing scheme is proposed. In this scheme, there is a central wavelength shift between adjacent beams in a laser quad. Two of these beams are transformed into left-rotating circularly polarized beams by using polarization control plates, and the other two are transformed into right-rotating circularly polarized beams. Moreover, conjugate spiral phase plates are adopted to transform the beams into conjugate Laguerre-Gaussian beams. As a result of the frequency beat among the beams with counter-rotating polarization and conjugate spiral phases, both the intensity distribution and polarization of the focal spot would rotate rapidly on the picosecond timescale. The physical model of the rapid polarization rotation smoothing scheme is built up, and the smoothing performance affected by the parameters of spiral phase plates, polarization control errors, wavelength shift, and wavefront distortions is analyzed in detail. The results indicate that the rapid polarization rotation smoothing scheme has a relatively wide tolerance to the polarization errors and the spiral phase plates, and can improve the smoothing performance effectively with the combination of the smoothing by spectral dispersion scheme. (C) 2020 Optical Society of America
机译:为了改善目标平面上的照射均匀性并降低间接驱动惯性限制融合设施中的参数反向散射,提出了一种快速偏振旋转平滑方案。在该方案中,激光四边形中的相邻光束之间存在中心波长偏移。通过使用偏振控制板将两个梁中的两个转换为左旋转圆偏振梁,另一个两个被转换成右旋圆偏振梁。此外,采用共轭螺旋相板将光束转化为共轭拉格勒 - 高斯梁。由于具有反向旋转偏振和共轭螺旋相之间的梁之间的频率搏动,焦斑的强度分布和极化都会在皮秒秒级上旋转。建立了快速偏振旋转平滑方案的物理模型,并详细地分析了受螺旋相板参数,极化控制误差,波长偏移和波前畸变影响的平滑性能。结果表明,快速偏振旋转平滑方案对偏振误差和螺旋相板具有相对较宽的公差,并且可以通过光谱分散方案平滑的组合有效地提高平滑性能。 (c)2020美国光学学会

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    《Applied optics》 |2020年第15期|共10页
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