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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

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

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

Dependence of the yield of hard incoherent X-rays from femtosecond laser plasma on the atomic number of target materialVOLKOV, R. V; GORDIENKO, V. M; MIKHEEV, P. M et al.Quantum electronics (Woodbury). 2000, Vol 30, Num 10, pp 896-900, issn 1063-7818Article

Fusion product momentum deposition in laser imploded targetsKUROKI, Y; NAKAO, Y; JOHZAKI, T et al.Nuclear fusion. 2000, Vol 40, Num 3, pp 357-363, issn 0029-5515Article

In-situ polymerization of foam filled laser targets with two regions of different densities, separated by a thin filmHORSFIELD, C. J; NAZAROV, W; OADES, K et al.Fusion technology. 1999, Vol 35, Num 2, pp 95-100, issn 0748-1896Conference Paper

The fabrication of double shell targets for NovaDUKE, J. R; ELLIOTT, N. E; MOORE, J. E et al.Fusion technology. 1999, Vol 35, Num 2, pp 90-94, issn 0748-1896Conference Paper

The production of surface profiles on target componentsKEATCH, R. P; LAWRENSON, B; LEWIS, F. B et al.Fusion technology. 1999, Vol 35, Num 2, pp 85-89, issn 0748-1896Conference Paper

ICF target technology at the Russian federal nuclear centerVESELOV, A. V; DROZHIN, V. S; PIKULIN, I. V et al.Fusion technology. 1995, Vol 28, Num 5, pp 1838-1843, issn 0748-1896Conference Paper

Laser-to-proton energy transfer efficiency in laser-plasma interactionsFOURKAL, E; VELTCHEV, I; MA, C.-M et al.Journal of plasma physics. 2009, Vol 75, pp 235-250, issn 0022-3778, 16 p., 2Article

Pyrolytic removal of the plastic mandrel from sputtered beryllium shellsCOOK, Robert C; LETTS, Stephan A; BUCKLEY, Steven R et al.Fusion science and technology. 2006, Vol 49, Num 4, pp 802-808, 7 p.Conference Paper

Fabrication and characterization of fast ignition targetsHILL, D. W; CASTILLO, E; STEPHENS, R. B et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 113-116, 4 p.Conference Paper

Fabrication of gas-filled tungsten-coated glass shellsNIKROO, A; BAUGH, W; STEINMAN, D. A et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 202-205, 4 p.Conference Paper

Progress in 2 mm glow discharge polymer mandrel development for NIFNIKROO, A; BOUSQUET, J; COOK, R et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 165-169, 5 p.Conference Paper

Progress toward meeting nif specifications for vapor deposited polyimide ablator coatingsLETTS, Stephan A; ANTHAMATTEN, Mitchell; BUCKLEY, Steven R et al.Fusion science and technology. 2004, Vol 45, Num 2, pp 180-186, 7 p.Conference Paper

Tritium inventory of inertial fusion energy target fabrication facilities: Effect of foam density and consideration of target yield of direct drive targetsSCHWENDT, Ana M; NOBILE, Arthur; GOBBY, Peter L et al.Fusion science and technology. 2003, Vol 43, Num 2, pp 217-229, 13 p.Article

Issues in capsule fabrication and injection into a wet-walled IFE reactorNORIMATSU, T; NAGAI, K; TAKAKI, T et al.Fusion engineering and design. 2001, Vol 55, Num 4, pp 387-396, issn 0920-3796Article

ICF target ignition studies in planar, cylindrical, and spherical geometriesDJAOUI, A.Laser and particle beams (Print). 2001, Vol 19, Num 1, pp 169-173, issn 0263-0346Conference Paper

Behavior of turbulized mixtures at the stage of inertial motion for different atwood numbersKUCHERENKO, Yu. A; PYLAEV, A. P; CHERRET, R et al.Laser and particle beams (Print). 2000, Vol 18, Num 2, pp 163-169, issn 0263-0346Article

Microengineering techniques for fabricating planar foils for use in laser targetsKEATCH, R. P; LAWRENSON, B; LEWIS, F. B et al.Fusion technology. 1999, Vol 35, Num 2, pp 101-105, issn 0748-1896Conference Paper

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