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Design and modeling of ignition targets for the National Ignition Facility

Physics of Plasmas · 1995 · Vol. 2(6) · pp. 2480–2487
S. W. HaanS. M. PollaineJ. D. LindlL. J. SuterR. L. BergerL. V. PowersWilliam E. AlleyPeter AmendtJ. A. H. FuttermanW. K. LevedahlM. D. RosenD. RowleyR. A. SacksA.I. ShestakovGeorge L. StrobelM. TabakS. V. WeberG. B. ZimmermanWilliam J. KrauserD. C. WilsonS.V. CoggeshallDavid B. HarrisN. M. HoffmanBernhard H. Wilde

Abstract

Several targets are described that in simulations give yields of 1–30 MJ when indirectly driven by 0.9–2 MJ of 0.35 μm laser light. The article describes the targets, the modeling that was used to design them, and the modeling done to set specifications for the laser system in the proposed National Ignition Facility. Capsules with beryllium or polystyrene ablators are enclosed in gold hohlraums. All the designs utilize a cryogenic fuel layer; it is very difficult to achieve ignition at this scale with a noncryogenic capsule. It is necessary to use multiple bands of illumination in the hohlraum to achieve sufficiently uniform x-ray irradiation, and to use a low-Z gas fill in the hohlraum to reduce filling of the hohlraum with gold plasma. Critical issues are hohlraum design and optimization, Rayleigh–Taylor instability modeling, and laser–plasma interactions.

Laser-Plasma Interactions and DiagnosticsLaser-induced spectroscopy and plasmaAtomic and Molecular PhysicsHohlraumNational Ignition FacilityInertial confinement fusionIgnition systemPhysicsLaserPlasmaNuclear engineeringNova (rocket)Optics

Funding

  • U.S. Department of Energy
  • Lawrence Livermore National Laboratory
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Design and modeling of ignition targets for the National Ignition Facility · Scinovex