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Technical Paper

Reduction of Radiation Asymmetry with Radiation Shields in Indirectly Driven Inertial Confinement Fusion Hohlraum Targets

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Pages 251-264 | Published online: 09 May 2017

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Kyung-Ho Kang & Joachim A. Maruhn. (1997) Dynamic Effects on Symmetrization in Indirectly Driven Inertial Confinement Fusion Hohlraum Targets. Fusion Technology 31:3, pages 265-279.
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Articles from other publishers (6)

Ingo Hofmann. (2018) Review of accelerator driven heavy ion nuclear fusion. Matter and Radiation at Extremes 3:1, pages 1-11.
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Ingo Hofmann. (2016) Heavy Ion Accelerator–Driven Inertial Fusion. Reviews of Accelerator Science and Technology 08, pages 37-53.
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R. M. Bock, I. Hofmann, D. H. H. Hoffmann & G. Logan. 2005. Nuclear Energy. Nuclear Energy 529 554 .
V.F. Ermolovich, G.N. Remizov, Yu. A. Romanov, N.A. Ryabikina, R.M. Shagaliev, L.L. Vakhlamova, V.V. Vatulin, O.A. Vinokurov, K.-H. Kang, J.A. Maruhn & R. Bockf. (2009) Studies on radiation generation and symmetrization in two-side irradiated heavy-ion beam Hohlraums. Laser and Particle Beams 16:3, pages 525-532.
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K.J Lutz, F Illenberger & J.A Maruhn. (1998) Three-dimensional viewfactor simulations of an ignition scale target for heavy ion fusion. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 415:1-2, pages 133-138.
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G.N Remizov, Yu.A Romanov, N.A Ryabikina, R.M Shagaliev, L.L Vakhlamova, V.V Vatulin, O.A Vinokurov, R Bock, K.-H Kang & J.A Maruhn. (1998) Indirect-drive inertial fusion targets for two-sided heavy-ion illumination. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 415:1-2, pages 139-143.
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