驱动P1对内爆对称性调控的影响分析

Analysis of the impact of driven P1 on implosion symmetry tuning.

  • 摘要: 在激光惯性约束聚变中,实现靶丸的球对称内爆是获得高增益聚变的关键。为此,实验上通过全时段对称性诊断与调控,以优化驱动对称性并抑制燃料扰动。在内爆飞行阶段,通常采用背光成像技术,主要针对轴对称低阶不对称性P2和P4进行调控。然而在实际实验中,受激光功率、诊断孔布局等因素影响,也可能出现P1不对称性。通过流体模拟耦合X射线背光成像仿真,研究了P1不对称性对P2与P4测量的影响。结果表明,P1不对称性会引起靶丸位移,从而产生额外的P2、P4乃至P3不对称信号。当P1达到约5%时,其对P2拟合结果的额外贡献绝对值超过2%,相对误差可达10%以上,已对P2测量产生显著干扰。各阶不对称分量随P1呈现规律性变化。仿真分析证实,背光成像能够提供更精细的驱动不对称性信息,有助于提升对称性调控的精度。

     

    Abstract:
    Background In laser-driven Inertial Confinement Fusion, achieving spherical symmetry in the implosion of the capsule is crucial for high-gain fusion.
    Purpose Full-time symmetry diagnosis and tuning are employed to optimize drive symmetry and suppress fuel perturbations. During the implosion accelerator phase, backlight imaging is typically used to primarily regulate the low-order axisymmetric asymmetries P2 and P4. However, in actual experiments, factors such as laser power and diagnostic holes layout can also lead to the emergence of P1 asymmetry.
    Methods This paper investigates the influence of P1 asymmetry on the measurements of P2 and P4 through hydrodynamic simulations coupled with X-ray backlight imaging.
    Results The results show that P1 asymmetry causes capsule displacement, thereby generating additional asymmetric signals in P2, P4, and even P3. When P1 reaches approximately 5%, its absolute additional contribution to the fitted P2 exceeds 2%, with a relative error exceeding 10%, indicating that this effect is non-negligible and has a significant impact on P2 measurement.
    Conclusions The asymmetric components of various orders exhibit regular variations with P1. Simulation analysis demonstrates that backlight imaging can provide more detailed information on drive asymmetry, thereby aiding in improving the accuracy of symmetry control.

     

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