Observation of interspecies ion separation in inertial-confinement-fusion implosions

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Abstract

We report direct experimental evidence of interspecies ion separation in direct-drive, inertial-confinement-fusion experiments on the OMEGA laser facility. These experiments, which used plastic capsules with D2/Ar gas fill (1% Ar by atom), were designed specifically to reveal interspecies ion separation by exploiting the predicted, strong ion thermo-diffusion between ion species of large mass and charge difference. Via detailed analyses of imaging x-ray-spectroscopy data, we extract Ar-atom-fraction radial profiles at different times, and observe both enhancement and depletion compared to the initial 1%-Ar gas fill. The experimental results are interpreted with radiation-hydrodynamic simulations that include recently implemented, first-principles models of interspecies ion diffusion. The experimentally inferred Ar-atom-fraction profiles agree reasonably, but not exactly, with calculated profiles associated with the incoming and rebounding first shock.

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Hsu, S. C., Joshi, T. R., Hakel, P., Vold, E. L., Schmitt, M. J., Hoffman, N. M., … Herrmann, H. W. (2016). Observation of interspecies ion separation in inertial-confinement-fusion implosions. EPL, 115(6). https://doi.org/10.1209/0295-5075/115/65001

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