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A LASER BASED FUSION TEST FACILITYOBENSCHAIN, S. P; SETHIAN, J. D; SCHMITT, A. J et al.Fusion science and technology. 2009, Vol 56, Num 2, pp 594-603, issn 1536-1055, 10 p.Article
Thermo-mechanical and neutron lifetime modelling and design of Be pebbles in the neutron multiplier for the LIFE engineDEMANGE, P; MARIAN, J; CARO, M et al.Nuclear fusion. 2009, Vol 49, Num 11, issn 0029-5515, 115013.1-115013.10Article
Particle acceleration in ultra-intense laser plasma interactionMORA, P.The European physical journal. Special topics. 2009, Vol 175, pp 97-104, issn 1951-6355, 8 p.Conference Paper
INERTIAL FUSION ENERGY POWER REACTOR FUEL RECOVERY SYSTEMGENTILE, C. A; KOZUB, T; LANGISH, S. W et al.Fusion science and technology. 2008, Vol 54, Num 2, pp 371-374, 4 p.Conference Paper
A self-cooled liquid breeder blanket for a laser ife power plant with magnetic interventionRAFFRAY, A. R; ROBSON, A. E; SAWAN, M. E et al.Fusion science and technology. 2007, Vol 52, Num 3, pp 603-608, 6 p.Conference Paper
Liner-driven pulsed magnetized target fusion power plantMILLER, Ronald L.Fusion science and technology. 2007, Vol 52, Num 3, pp 427-431, 5 p.Conference Paper
Hohlraum-driven ignitionlike double-shell implosions on the omega laser facilityAMENDT, Peter A; ROBEY, Harry F; GLEBOV, V. Yu et al.Physical review letters. 2005, Vol 94, Num 6, pp 065004.1-065004.4, issn 0031-9007Article
Estimation of the isentropic parameter in the compression process of the D/3He plasma based on laser particle acceleration energyMAHDAVI, M; KHODADADI AZADBONI, F.The European physical journal. D, Atomic, molecular and optical physics (Print). 2012, Vol 66, Num 8, issn 1434-6060, 66220.1-66220.6Article
Laser-driven shock propagation into quartz targets driven by various drive pulse configurations: experimentsSHU, H; FU, S. Z; HUANG, X. G et al.The European physical journal. D, Atomic, molecular and optical physics (Print). 2012, Vol 66, Num 10, issn 1434-6060, 66268.1-66268.4Article
Nd:GLASS LASER DESIGN FOR LASER ICF FISSION ENERGY (LIFE)CAIRD, John; AGRAWAL, Vivek; FREITAS, Barry et al.Fusion science and technology. 2009, Vol 56, Num 2, pp 607-617, issn 1536-1055, 11 p.Article
SYSTEMS MODELING FOR THE LASER FUSION-FISSION ENERGY (LIFE) POWER PLANTMEIER, W. R; ABBOTT, R; MACLNTYRE, A et al.Fusion science and technology. 2009, Vol 56, Num 2, pp 647-651, issn 1536-1055, 5 p.Article
Numerical analysis of the irradiation uniformity of a directly driven inertial confinement fusion capsuleTEMPORAL, M; CANAUD, B.The European physical journal. D, Atomic, molecular and optical physics (Print). 2009, Vol 55, Num 1, pp 139-145, issn 1434-6060, 7 p.Article
NEAR TERM APPLICATIONS OF INERTIAL ELECTROSTATIC CONFINEMENT FUSION RESEARCHKULCINSKI, G. L; SANTARIUS, J. F; ZENOBIA, S. J et al.Fusion science and technology. 2009, Vol 56, Num 1, pp 493-500, issn 1536-1055, 8 p.Conference Paper
Inertial fusion research in China : Inertial confinement science and applicationsHE, X. T; ZHANG, W. Y.The European physical journal. D, Atomic, molecular and optical physics (Print). 2007, Vol 44, Num 2, pp 227-231, issn 1434-6060, 5 p.Article
Overview of inertial fusion research in the United StatesSANGSTER, T. C; MCCRORY, R. L; ATHERTON, L. J et al.Nuclear fusion. 2007, Vol 47, Num 10, issn 0029-5515, S686-S695Article
The mercury project : A high average power, gas-cooled laser for inertial fusion energy developmentBAYRAMIAN, A; ARMSTRONG, P; ERLANDSON, A et al.Fusion science and technology. 2007, Vol 52, Num 3, pp 383-387, 5 p.Conference Paper
Acceleration and deceleration model of indirect drive ICF capsulesSAILLARD, Yves.Nuclear fusion. 2006, Vol 46, Num 12, pp 1017-1035, issn 0029-5515, 19 p.Article
Le Laser Mégajoule et la fusion inertielle = The Mégajoule Laser and inertial fusionCHENAIS-POPOVICS, Claude; VANDERHAEGEN, Daniel.Images de la physique. 2005, pp 45-50, issn 0290-0041, 6 p.Article
Laser mégajoule LMJEssais industriels. 2005, Num 35, issn 1290-0206, 36 p.Serial Issue
Le laser mégajoule = The megajoule laserEssais industriels. 2005, Num 35, pp 14-21, issn 1290-0206, 8 p.Article
Les défis technologiques associés aux optiques = The technological challenges associated to the opticsCHABASSIER, G; ROUSSEL, A.Essais industriels. 2005, Num 35, pp 22-27, issn 1290-0206, 6 p.Article
Recent experiments on electron transport in high-intensity laser matter interactionBATON, S. D; BATANI, D; AINIRANOFF, F et al.Plasma physics and controlled fusion. 2005, Vol 47, Num 12B, pp B777-B789, issn 0741-3335Conference Paper
Two-plasmon decay instability's signature in spectral lines and spectroscopic measurements of charge exchange rate in a femtosecond laser-driven cluster-based plasmaOKS, E; DALIMIER, E; SKOBELEV, I et al.Journal of physics. B. Atomic, molecular and optical physics (Print). 2014, Vol 47, Num 22, issn 0953-4075, 221001.1-221001.6Article
Consolidated electron emission effects in an IEC deviceKRUPAKAR MURALI, S; SANTARIUS, John F; KULCINSKI, Gerald L et al.Plasma sources science & technology (Print). 2010, Vol 19, Num 4, issn 0963-0252, 045029.1-045029.12Article
La fusion par laser au seuil de la réalité : Contrôler la fusion nucléaireLABAUNE, Christine.Pour la science (Imprimé). 2010, Num 392, pp 36-43, issn 0153-4092, 8 p.Article