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Dynamics of sublimation and initial erosion plasma formation under the action of aqusicontinuous laser radiation on metalsMIN'KO, L. YA; MASONOV, U. I; ROMANOV, G. S et al.Journal of engineering physics and thermophysics. 1994, Vol 66, Num 4, pp 393-397, issn 1062-0125Article

Inverse mean free path of swift electrons in metals irradiated by a strong laser fieldMORENO-MARIN, Juan Carlos; ABRIL, Isabel; GARCIA-MOLINA, Rafael et al.Laser and particle beams (Print). 2003, Vol 21, Num 1, pp 91-96, issn 0263-0346, 6 p.Article

The use of a potential jump on a laser target for measuring the electron temperature of a plasmaBYKOVSKY, Yu. A; KONYUKHOV, I. Yu; PEKLENKOV, V. D et al.Laser physics. 2000, Vol 10, Num 6, pp 1227-1229, issn 1054-660XArticle

Generation of X-ray and ion threat spectra for the fusion test facility using the bucky 1-D radiation hydrodynamics codeHELTEMES, T. A; MOSES, G. A.Fusion science and technology. 2007, Vol 52, Num 4, pp 796-800, 5 p.Conference Paper

Exposure of NIF relevant polymeric samples to deuterium-tritium gas at elevated temperature and pressureEBEY, Peter S; DOLE, James M; NOBILE, Arthur et al.Fusion science and technology. 2006, Vol 49, Num 4, pp 859-864, 6 p.Conference Paper

Fabrication of window saddles for NIF cryogenic hohlraumsGIRALDEZ, Emilio; KAAE, James L.Fusion science and technology. 2004, Vol 45, Num 2, pp 206-209, 4 p.Conference Paper

Automated batch characterization of ICF shells with vision-enabled optical microscope systemHUANG, H; STEPHENS, R. B; HILL, D. W et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 214-217, 4 p.Conference Paper

X-ray diagnostics of partially transparent Fe and Al plasmas for inverted corona targetsBESSARAB, A. V; BEL'KOV, S. A; VOINOV, B. A et al.Laser and particle beams (Print). 2000, Vol 18, Num 2, pp 229-236, issn 0263-0346Article

Twelfth Target Fabrication Specialists' MeetingFOREMAN, Larry R.Fusion technology. 1999, Vol 35, Num 2, issn 0748-1896, 190 p.Conference Proceedings

Cylindrical targets for the fast igniter schemeKINGHAM, R. J; BELL, A. R; HALL, T. A et al.Plasma physics and controlled fusion. 1996, Vol 38, Num 10, pp 1763-1777, issn 0741-3335Article

Rayleigh-Taylor instability in the incompressible shell with allowance for ablative stabilizationLEBO, I. G; ROZANOV, V. B.Laser and particle beams (Print). 1994, Vol 12, Num 3, pp 379-386, issn 0263-0346Conference Paper

Sub-mega joule laser target designs for direct-drive ignition and moderate gainsCOLOMBANT, D. G; OBENSCHAIN, S. P.Nuclear fusion. 2007, Vol 47, Num 1, pp 17-22, issn 0029-5515, 6 p.Article

On using discontinuous finite element methods to simulate inertial confinement fusionBURBEAU-AUGOULA, Anne.International journal for numerical methods in fluids. 2005, Vol 47, Num 8-9, pp 887-893, issn 0271-2091, 7 p.Conference Paper

Predicting the equilibrium deuterium-tritium fuel layer thickness profile in an indirect-drive hohlraum capsuleSANCHEZ, Jorge J; GIEDT, Warren H.Fusion science and technology. 2004, Vol 45, Num 2, pp 253-261, 9 p.Conference Paper

Rayleigh-Taylor turbulent mixing evolution under a shock influenceKUCHERENKO, Yu. A; PYLAEV, A. P; MURZAKOV, V. D et al.Laser and particle beams (Print). 2000, Vol 18, Num 2, pp 155-161, issn 0263-0346Article

The 25th European Conference on Laser Interaction With Matter ECLIM 1998CARUSO, Angelo; STRANGIO, Carmela.Laser and particle beams (Print). 1999, Vol 17, Num 3, issn 0263-0346, 239 p.Conference Proceedings

Investigation of iodine laser interaction of intensities Iλ2∼1013-1015 Wcm-2μm2 with aluminum targetsMROZ, W; PARYS, P; WOLOWSKI, J et al.Laser and particle beams (Print). 1994, Vol 12, Num 3, pp 421-433, issn 0263-0346Conference Paper

Target alignment in the National Ignition FacilityVANN, C. S; BLISS, E. S; MURRAY, J. E et al.Fusion technology. 1994, Vol 26, Num 3, pp 833-836, issn 0748-1896, 2Conference Paper

Target area chamber system design for the National Ignition FacilityWAVRIK, R; DEMPSEY, F; ANDERSON, A et al.Fusion technology. 1994, Vol 26, Num 3, pp 785-790, issn 0748-1896, 2Conference Paper

Development of foam shell with plastic ablator for cryogenic laser fusion targetTAKAGI, M; ISHIHARA, M; NORIMATSU, T et al.Journal of vacuum science and technology. A. Vacuum, surfaces, and films. 1993, Vol 11, Num 5, pp 2837-2845, issn 0734-2101Article

Pogress in coating multi-layered cocktail hohlrumsWILKENS, H. L; GUNTHER, J; MAULDIN, M. P et al.Fusion science and technology. 2006, Vol 49, Num 4, pp 846-850, 5 p.Conference Paper

Tin-polymer composite on a rotating drum as a high repetition rate laser target for extreme ultraviolet generationYASUDA, Yuzuri; QINCUI GU; NAGAI, Keiji et al.Fusion science and technology. 2006, Vol 49, Num 4, pp 691-694, 4 p.Conference Paper

The LMJ cryogenic target assembly: Functions and fabricationBACLET, Ph; BEDNARCZYK, S; RENEAUME, B et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 276-281, 6 p.Conference Paper

Application of photosensitive resins to microengineering target componentsKEATCH, R. P; LAWRENSON, B; LYTTLE, G et al.Fusion science and technology. 2002, Vol 41, Num 3, pp 174-177, 4 p., 1Article

Equation of state of water in the megabar rangeHENRY, E; BATANI, D; CAUBLE, R et al.Laser and particle beams (Print). 2001, Vol 19, Num 1, pp 111-115, issn 0263-0346Conference Paper

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