Abstract
With the next generation of high-power laser facilities for inertial fusion coming online, ensuring laser beam propagation through centimetre-scale plasmas is a key physics issue for reaching ignition. Existing experimental results including the most recent one are limited to small laser spots, low-interaction laser beam energies and small plasma volumes of 1-2mm. Here, we demonstrate the propagation of an intense, high-energy, ignition-size laser beam through fusion-size plasmas on the National Ignition Facility (NIF) and find the experimental measurements to agree with full-scale modelling. Previous attempts to apply computer modelling as a predictive capability have been limited by the inherently multiscale description of the full laser-plasma interaction processes. The findings of this study validate supercomputer modelling as an essential tool for the design of future ignition experiments. © 2007 Nature Publishing Group.
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CITATION STYLE
Glenzer, S. H., Froula, D. H., Divol, L., Dorr, M., Berger, R. L., Dixit, S., … Young, B. K. F. (2007). Experiments and multiscale simulations oflaser propagation through ignition-scaleplasmas. Nature Physics, 3(10), 716–719. https://doi.org/10.1038/nphys709
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