Abstract
Direct-drive-implosion experiments from both OMEGA and the National Ignition Facility (NIF) are critical to gain confidence in ignition predictions on the NIF. Adequate performance of hydrodynamically scaled 1.8-MJ ignition designs must be obtained on OMEGA at 26 kJ. Implosions on the NIF must be used to identify and mitigate the effect of laser-plasma interactions (LPI's) on hydrodynamic parameters at the NIF scale. Results from spherically driven OMEGA cryogenic implosion experiments are described. Mitigation of nonuniformity sources and cross-beam energy transfer (CBET) is important for improving target performance on OMEGA. Initial polar-driven implosion experiments on the NIF have provided valuable measurements of trajectory and symmetry. Simulations that include the effect of CBET more closely reproduce the observed velocity.
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CITATION STYLE
Radha, P. B., Goncharov, V. N., Hohenberger, M., Sangster, T. C., Betti, R., Craxton, R. S., … MacKinnon, A. J. (2016). Direct-drive implosion physics: Results from OMEGA and the National Ignition Facility. In Journal of Physics: Conference Series (Vol. 688). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/688/1/012006
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