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- W3135347816 abstract "Volume ignition, in which fuel is usually surrounded by pushers made from high-Z materials, is an approach to inertial confinement fusion. High-Z pushers have high albedos, which means that they can re-radiate most of the radiation coming from the hot fuel. Hence, it is beneficial to realize ignition at lower temperatures. We develop a theoretical model comprising a set of coupled equations to model the radiation heat conduction between the hot fuel and the high-Z pusher. We then investigate the dependence of the albedo of the high-Z pusher on the state of the hot fuel. The results of our model show good consistency with numerical simulations. Furthermore, the physics of the radiation heat conduction between the hot fuel and the high-Z pusher in volume ignition is elucidated, which is important for follow-up studies of the critical values for volume ignition and for obtaining a physical picture of fusion burning. The model can also provide some theoretical basis for the design of double-shell targets and energy targets." @default.
- W3135347816 created "2021-03-15" @default.
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- W3135347816 date "2021-03-01" @default.
- W3135347816 modified "2023-09-26" @default.
- W3135347816 title "A theoretical model for radiation heat conduction between deuterium–tritium fuel and a high-<i>Z</i> pusher in volume ignition in inertial confinement fusion" @default.
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- W3135347816 doi "https://doi.org/10.1063/5.0032891" @default.
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