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Technical Paper

Wall-Thickness Dependence of Cooling-Induced Deformation of Polystyrene Spherical Shells

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Pages 270-274 | Published online: 12 May 2017

References

  • T. ENDO, K. SHIBATA, Y. FUJIMA, and T. NORIMATSU, “Cooling-Induced Deformation of Polystyrene Spherical Shells,” Fusion Technol., 38, 34 (2000).
  • T. ENDO, K. SHIBATA, N. KOBAYASHI, M. YASUDA, Y FUJIMA, and T. NORIMATSU, “Experimental Characterization of Cooling-Induced Deformation of Polystyrene Shells,” Fusion Sci. Technol., 41, 248 (2002).
  • S. E. BODNER et al., “Direct-Drive Laser Fusion: Status and Prospects,” Phys. Plasmas, 5, 1901 (1998).
  • T. R. DITTRICH et al., “Review of Indirect-Drive Ignition Design Options for the National Ignition Facility,” Phys. Plasmas, 6, 2164 (1999).
  • R. B. STEPHENS and M. D. WITTMAN, “Laser Fusion Target Shell Wall Thickness from Interference Fringe Shape Analysis,” J. Vac. Sci. Technol., A12, 1302 (1994).

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