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Measuring implosion velocities in experiments and simulations of laser-driven cylindrical implosions on the OMEGA laser

机译:测量ωS激光器激光驱动圆柱内注的实验和模拟中的测量速度

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摘要

Laser-driven magnetized liner inertial fusion (MagLIF) on OMEGA involves cylindrical implosions, a preheat beam, and an applied magnetic field. Initial experiments excluded the preheat beam and magnetic field to better characterize the implosion. X-ray self-emission as measured by framing cameras was used to determine the shell trajectory. The 1D code LILAC was used to model the central region of the implosion, and results were compared to 2D simulations from the HYDRA code. Post-processing of simulation output with SPECT3D and Yorick produced synthetic x-ray images that were used to compare the simulation results with the x-ray framing camera data. Quantitative analysis shows that higher measured neutron yields correlate with higher implosion velocities. The future goal is to further analyze the x-ray images to characterize the uniformity of the implosions and apply these analysis techniques to integrated laser-driven MagLIF shots to better understand the effects of preheat and the magnetic field.
机译:Omega上的激光驱动的磁化衬里惯性融合(Maglif)涉及圆柱内爆,预热梁和施加的磁场。初始实验排除了预热梁和磁场,以更好地表征爆炸性。通过框架摄像机测量的X射线自发射用于确定壳体轨迹。 1D码Lilac用于将内部区域的中央区域进行建模,并将结果与​​来自Hydra码的2D模拟进行比较。使用SPECT3D和Yorick产生的仿真输出的后处理用于将仿真结果与X射线框架相机数据进行比较。定量分析表明,较高的测量中子产率与较高的内爆速度相关。未来的目标是进一步分析X射线图像,以表征爆炸的均匀性,并将这些分析技术应用于集成的激光驱动的磁振镜头,以更好地理解预热和磁场的效果。

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