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A TARGET CHAMBER FOR CHARGED PARTICLE INDUCED X-RAY FLUORESCENCE STUDIESFELDL EJ; UMBARGER CJ.1972; NUCL. INSTRUM. METHODS; NETHERL.; DA. 1972; VOL. 103; NO 2; PP. 341-343; BIBL. 10 REF.Serial Issue

TARGET CHAMBER FOR USE WITH RADIATIVE TRANSITION REACTIONS STUDIESHSU TH; TSENG PK; LIN EK et al.1973; NUCL. INSTRUM. METHODS; NETHERL.; DA. 1973; VOL. 106; NO 3; PP. 513-517; BIBL. 7 REF.Serial Issue

Diagnostics of ablation process induced by pulsed ion beamWATANABE, M; OKAYAMA, H; FUNATSU, M et al.Fusion engineering and design. 1999, Vol 44, pp 267-270, issn 0920-3796Conference Paper

Neutronics and activation analysis for the national ignition facility cryogenic target positionerLATKOWSKI, J. F; SANCHEZ, J. J; PITTENGER, L. C et al.Fusion technology. 1999, Vol 35, Num 2, pp 255-259, issn 0748-1896Conference Paper

Computer modeling of ICF target chamber phenomena : Laser and particle beams: pulse power and high energy densitiesMOSES, G. A; PETERSON, R. R.Laser and particle beams (Print). 1994, Vol 12, Num 2, pp 125-162, issn 0263-0346Article

RERAME : a facility for investigating heavy ion reactions with activation techniquesFANTONI, R. F; GADIOLI, E; GUAZZONI, P et al.Applied radiation and isotopes. 1994, Vol 45, Num 3, pp 325-334, issn 0969-8043Conference Paper

Progress in heavy ion target capsule and hohlraum designCALLAHAN, Debra A; HERRMANN, Mark C; TABAK, Max et al.Laser and particle beams (Print). 2002, Vol 20, Num 3, pp 405-410, issn 0263-0346, 6 p.Conference Paper

Considerations on neutron/environment characteristics in inertial fusion ignition (NIF) and reactor (KOYO) facilitiesPERLADO, J. M.Fusion engineering and design. 1999, Vol 44, pp 353-358, issn 0920-3796Conference 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

EVALUATION OF SEVERAL ISSUES CONCERNING LASER BEAM PROPAGATION THROUGH THE LIFE TARGET CHAMBERWILKS, S. C; COHEN, B. I; LATKOWSKI, J. F et al.Fusion science and technology. 2009, Vol 56, Num 2, pp 652-657, issn 1536-1055, 6 p.Article

Parametric target chamber simulations for the inertial fusion energy integrated test facilityPETERSON, R. R.Fusion technology. 1994, Vol 26, Num 3, pp 881-885, issn 0748-1896, 2Conference Paper

Further development of the CELSIUS uhv systemWESTERBERG, L; JAHNKE, P; HERMANSSON, L et al.Vacuum. 1993, Vol 44, Num 5-7, pp 501-506, issn 0042-207XConference Paper

Impact of Target-Material Activation on Personnel Exposure and Radioactive Contamination in the National Ignition FacilityKHATER, Hesham; EPPERSON, Patrick; THACKER, Rick et al.IEEE transactions on plasma science. 2010, Vol 38, Num 3, pp 383-387, issn 0093-3813, 5 p., 1Conference Paper

Neutron radiation shielding for the NIF streaked X-ray detector (SXD) diagnosticSONG, Peter; HOLDER, Joe; YOUNG, Bruce et al.Fusion science and technology. 2007, Vol 52, Num 4, pp 1035-1039, 5 p.Conference Paper

Effects of chamber geometry and gas properties on hydrodynamic evolution of ife chambersDRAGOJLOVIC, Zoran; NAJMABADI, Farrokh.Fusion science and technology. 2005, Vol 47, Num 4, pp 1152-1159, 8 p.Conference Paper

Visual tsunami : A versatile, user-friendly, multidimensional ablation and gas-dynamics design codeDEBONNEL, C. S; WANG, T. X; SUZUKI, M et al.Fusion science and technology. 2005, Vol 47, Num 4, pp 1165-1169, 5 p.Conference Paper

Contribution of the ion diamagnetic flow to poloidal rotation and pressure asymmetries in the SOLCHANKIN, A. V; STANGEBY, P. C.Nuclear fusion. 2001, Vol 41, Num 4, pp 421-429, issn 0029-5515Article

The National Ignition FacilityHOGAN, W. J; MOSES, E. I; WARNER, B. E et al.Nuclear fusion. 2001, Vol 41, Num 5, pp 567-573, issn 0029-5515Article

Observations of the interaction of a plasma stream with neutral gas: evidence of plasma loss through molecular-activated recombinationRUSBRIDGE, M. G; SEWELL, G; QAOSIM, H et al.Plasma physics and controlled fusion. 2000, Vol 42, Num 5, pp 579-602, issn 0741-3335Article

Response of the National Ignition Facility target chamber walls to the microexplosion of a fusion targetPETERSON, R. R; MACFARLANE, J. J; PING WANG et al.Fusion technology. 1994, Vol 26, Num 3, pp 809-813, issn 0748-1896, 2Conference Paper

Recent Advances in the Development of X-Ray Cameras Inserted Inside a Pressurized Box for LMJ Plasma DiagnosticsBECK, Thierry; ZUBER, Céline; AUBERT, Damien et al.IEEE transactions on plasma science. 2010, Vol 38, Num 10, pp 2867-2872, issn 0093-3813, 6 p., 2Article

Current measurements in plasma produced by the train of 10.6 μm subnanosecond laser pulsesAPOLLONOV, V. V; KAZAKOV, K. K; PLETNYEV, N. V et al.SPIE proceedings series. 2000, pp 198-206, isbn 0-8194-3484-1Conference Paper

On the delay time for the onset of radiographic spot size growthKWAN, T. J. T.IEEE transactions on plasma science. 2000, Vol 28, Num 1, pp 268-270, issn 0093-3813Article

Design risk analysis comparison between low-activation composite and aluminum alloy target chamber for the national ignition facilitySTRECKERT, H. H; SCHLEICHER, R. W.Fusion technology. 1997, Vol 31, Num 1, pp 26-34, issn 0748-1896Article

DESIGN OF THE NIF CRYOGENIC TARGET SYSTEMGIBSON, C. R; ATKINSON, D. P; SKULINA, K. M et al.Fusion science and technology. 2009, Vol 55, Num 3, pp 233-236, issn 1536-1055, 4 p.Conference Paper

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