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- W2022131888 abstract "Summary form only given. It had been noticed long ago1 that the requirements for inertial confinement fusion (ICF) ignition in a cylindrical target can be significantly relaxed if the plasma were compressed simultaneously with the flux of the entrained magnetic field from its seeded value ∼100 kG to the peak value of ∼100 MG. The ultrahigh axial magnetic field insulates the hot spot from the cold walls compressing it and confines the fusion a-particles. Both approaches to magnetic flux compression by imploding plasmas envisioned in Ref.1, with pulsed power2 and laser ablation,3 have been demonstrated to work, producing peak fields of 42 MG and 36 MG, respectively. Recent numerical simulation results4,5 have predicted the possibility of ICF (MAGLIF) ignition and high energy gain in a flux-compression load driven by a next-generation fast multi-MA high-current facility." @default.
- W2022131888 created "2016-06-24" @default.
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- W2022131888 date "2012-07-01" @default.
- W2022131888 modified "2023-10-05" @default.
- W2022131888 title "Thermonuclear burn wave propagation across an ultrahigh magnetic field" @default.
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- W2022131888 doi "https://doi.org/10.1109/plasma.2012.6383950" @default.
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