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This article is cited in 4 scientific papers (total in 4 papers)
PLASMA, HYDRO- AND GAS DYNAMICS
Nonlocal heat transfer in a laser inertial confinement fusion for the direct irradiation scheme
S. I. Glazyrinab, V. A. Lykovc, S. A. Karpova, N. G. Karlykhanovc, D. A. Gryaznykhc, V. Yu. Bychenkovab a Dukhov Research Institute of Automatics, Moscow, 127030 Russia
b Lebedev Physical Institute, Russian Academy of Sciences, Moscow, 119991 Russia
c Russian Federal Nuclear Center VNIITF, Snezhinsk, Chelyabinsk region, 456770 Russia
Abstract:
High gradients of electron temperature appear in plasma corona under direct laser irradiation of inertial confinement fusion targets. This results in nonlocality of heat transport. Such effect influence the efficiency of laser absorption, redistribute heat fluxes and could preheat plasma ahead the front shock wave, therefore alter the compression adiabat. Ignition requires a specially tuned compression dynamics, so such an effect should be taken into account. Target simulations with nonlocal models show the decrease of compression efficiency and hot-spot parameters degradation compared to local models: Spitzer–Härm model with and without flux-limiter.
Received: 25.05.2022 Revised: 25.05.2022 Accepted: 09.06.2022
Citation:
S. I. Glazyrin, V. A. Lykov, S. A. Karpov, N. G. Karlykhanov, D. A. Gryaznykh, V. Yu. Bychenkov, “Nonlocal heat transfer in a laser inertial confinement fusion for the direct irradiation scheme”, Pis'ma v Zh. Èksper. Teoret. Fiz., 116:2 (2022), 80–87; JETP Letters, 116:2 (2022), 83–89
Linking options:
https://www.mathnet.ru/eng/jetpl6713 https://www.mathnet.ru/eng/jetpl/v116/i2/p80
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Abstract page: | 98 | References: | 25 | First page: | 16 |
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