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Near-field nonuniformities in angularly multiplexed KrF fusion lasers with induced spatial incoherence

机译:具有空间不相干性的角度复用KrF聚变激光器中的近场非均匀性

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摘要

Induced spatial incoherence (ISI) has been proposed for KrF laser drivers to achieve the high degree of spatial beam uniformity required for direct-drive inertial confinement fusion. Although ISI provides ultrasmooth illumination at the far field of the laser, where the target is located, it can still allow the beams in the quasi-near field to develop a time-averaged spatial structure. This speckle, which arises primarily from random-phase aberration, builds up as the laser beams propagate away from the pupil plane located at the final amplifier stage; it is distinct from any structure imposed by gain nonuniformities in the amplifiers. Because of the spatial incoherence, the speckle is significantly smaller than that experienced by coherent beams. Nevertheless, it remains a damage issue, especially for the long beam delay paths required in angularly multiplexed KrF lasers. We develop a novel algorithm for calculating the time-integrated intensities; compare simulations and measurements of the near-field speckle in the Nike KrF laser; and explore options, such as aberration reduction and optical relaying, for controlling the problem in future angularly multiplexed KrF drivers.
机译:已经提出了用于KrF激光驱动器的感应空间不相干(ISI),以实现直接驱动惯性约束聚变所需的高度空间光束均匀性。尽管ISI在目标所在的激光远场提供超平滑的照明,但它仍可以使准近场中的光束形成时间平均的空间结构。这种散斑主要是由随机相位像差引起的,随着激光束从位于末级放大器级的光瞳平面传播离开而形成。它不同于放大器中增益不均匀所施加的任何结构。由于空间的不连续性,散斑明显小于相干光束的散斑。然而,这仍然是一个损害问题,尤其是对于角度多路复用KrF激光器所需的长光束延迟路径而言。我们开发了一种新颖的算法来计算时间积分强度。比较Nike KrF激光器中近场散斑的仿真和测量结果;并探索诸如减少像差和光学中继之类的选项,以控制未来的角度多路复用KrF驱动器中的问题。

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