Colaïtis A, Turnbull D P, Igumenschev I V, Edgell D, Shah R C, Mannion O M, Stoeckl C, Jacob-Perkins D, Shvydky A, Janezic R, Kalb A, Cao D, Forrest C J, Kwiatkowski J, Regan S, Theobald W, Goncharov V N, Froula D H
Centre Lasers Intenses et Applications, UMR 5107, 351 Cours de la libération, 33400 Talence, France.
Laboratory for Laser Energetics, 250 East River Road, Rochester, New York 14623-1212, USA.
Phys Rev Lett. 2022 Aug 26;129(9):095001. doi: 10.1103/PhysRevLett.129.095001.
Spherical implosions in inertial confinement fusion are inherently sensitive to perturbations that may arise from experimental constraints and errors. Control and mitigation of low-mode (long wavelength) perturbations is a key milestone to improving implosion performances. We present the first 3D radiation-hydrodynamic simulations of directly driven inertial confinement fusion implosions with an inline package for polarized crossed-beam energy transfer. Simulations match bang times, yields (separately accounting for laser-induced high modes and fuel age), hot spot flow velocities and direction, for which polarized crossed-beam energy transfer contributes to the systematic flow orientation evident in the OMEGA implosion database. Current levels of beam mispointing, imbalance, target offset, and asymmetry from polarized crossed-beam energy transfer degrade yields by more than 40%. The effectiveness of two mitigation strategies for low modes is explored.
惯性约束聚变中的球形内爆本质上对可能源于实验限制和误差的扰动很敏感。控制和减轻低模(长波长)扰动是提高内爆性能的一个关键里程碑。我们展示了首个使用用于极化交叉束能量转移的内联程序包对直接驱动惯性约束聚变内爆进行的三维辐射流体动力学模拟。模拟结果与爆轰时间、产额(分别考虑激光诱导的高模和燃料年龄)、热点流速和方向相匹配,极化交叉束能量转移促成了在欧米伽内爆数据库中明显的系统流动取向。当前来自极化交叉束能量转移的束指向误差、不平衡、靶偏移和不对称水平使产额降低超过40%。我们探索了两种减轻低模扰动策略的有效性。