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Results 1 to 25 of 781

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Modelling of plasma plume induced during laser weldingMOSCICKI, T; HOFFMAN, J; SZYMANSKI, Z et al.Journal of physics. D, Applied physics (Print). 2006, Vol 39, Num 4, pp 685-692, issn 0022-3727, 8 p.Article

Influence of the laser pulse duration on laser-produced plasma propertiesLE DROGOFF, B; MARGOT, J; VIDAL, F et al.Plasma sources science & technology (Print). 2004, Vol 13, Num 2, pp 223-230, issn 0963-0252, 8 p.Article

Investigation of the mechanisms involved in formation and decay of laser-produced plasmasCOLAO, F; PERSHIN, S; LAZIC, V et al.Applied surface science. 2002, Vol 197-98, pp 207-212, issn 0169-4332, 6 p.Conference Paper

Space-resolved analysis of highly charged radiating target ions generated by kilojoule laser beamsROSMEJ, F. B; RENNER, O; ROSMEJ, O. N et al.Laser and particle beams (Print). 2002, Vol 20, Num 4, pp 555-557, issn 0263-0346, 3 p.Conference Paper

Production of an extended plasma column in vacuum by irradiating a target by a quasi-Bessel beamBATENIN, V. M; BYCHKOV, S. S; MARGOLIN, L. Ya et al.Quantum electronics (Woodbury). 2001, Vol 31, Num 5, pp 448-452, issn 1063-7818Article

Dense femtosecond plasma at moderate intensities: Hot electrons, fast ions, and thermonuclear processes in modified targetsGOLISHNIKOV, D. M; GORDIENKO, V. M; MIKHEEV, P. M et al.Laser physics. 2001, Vol 11, Num 11, pp 1205-1211, issn 1054-660XArticle

Analytical study of the hydrodynamics of similarity flows from thin-foil laser plasmasFERRARIO, L.Journal of plasma physics. 2000, Vol 64, pp 1-11, issn 0022-3778, 1Article

A spectroscopic study of plasmas produced by laser ablation of hollow aluminium targetsANDREIC, Z; ASCHKE, L; KUNZE, H.-J et al.Journal of physics. D, Applied physics (Print). 1998, Vol 31, Num 12, pp 1487-1491, issn 0022-3727Article

Analysis of the expansion of hydroxyapatite laser ablation plumesSERRA, P; CLERIES, L; MORENZA, J. L et al.Applied surface science. 1996, Vol 96-98, pp 216-221, issn 0169-4332Conference Paper

Density and electron temperature of laser induced plasma : a comparison of different investigation methodsLENK, A; WITKE, T; GRANSE, G et al.Applied surface science. 1996, Vol 96-98, pp 195-198, issn 0169-4332Conference Paper

Two-component structure in the angular emission of a laser-produced Ta plasmaTHUM, A; RUPP, A; ROHR, K et al.Journal of physics. D, Applied physics (Print). 1994, Vol 27, Num 8, pp 1791-1794, issn 0022-3727Article

Etude numérique et expérimentale de l'interaction d'une impulsion laser subpicoseconde avec une cible solide = Numerical and experimental study of the interaction of a subpicosecond laser pulse with a solid targetFallies, Florence; Geindre, J.-P.1994, 286 p.Thesis

An investigation of the wavelength-dependence of threshold intensity of laser-induced breakdown of molecular hydrogenGAMAL, Y. E. E.-D; SHAFIK, M. S; KHALIL, M. M et al.Journal of physics. D, Applied physics (Print). 1993, Vol 26, Num 11, pp 1933-1940, issn 0022-3727Article

Numerical simulations of charge state distribution from a KrF laser-produced plasmaTSUI, Y. Y; FEDOSEJEVS, R; OFFENBERGER, A. A et al.Physics of fluids. B, Plasma physics. 1993, Vol 5, Num 11, pp 4115-4122, issn 0899-8221Article

Conversion efficiency of a laser-produced Sn plasma at 13.5 nm, simulated with a one-dimensional hydrodynamic model and treated as a multi-component blackbodyCUMMINGS, A; O'SULLIVAN, G; DUNNE, P et al.Journal of physics. D, Applied physics (Print). 2005, Vol 38, Num 4, pp 604-616, issn 0022-3727, 13 p.Article

Identification and precise measurements of the wavelengths of high-n transitions in N-, O-, and F-like Zn ionsFOURNIER, K. B; FAENOV, A. Ya; BOLLANTI, S et al.Journal of physics. B. Atomic, molecular and optical physics (Print). 2003, Vol 36, Num 18, pp 3787-3796, issn 0953-4075, 10 p.Article

Picosecond neutron pulse formation under femtosecond laser pulse interaction with nanostructured targetsGORDIENKO, V. M; JOUKOV, M. A; RAKOV, E. V et al.Laser physics. 2003, Vol 13, Num 11, pp 1376-1380, issn 1054-660X, 5 p.Article

Photoexcitation of low-lying nuclear levels by Bremsstrahlung of laser plasmaANDREEV, A. V; CHALYKH, R. A.Laser physics. 2002, Vol 12, Num 2, pp 320-324, issn 1054-660XConference Paper

Laser sustained plasma in the flow field of a sonic nozzleLEBEHOT, A; LAGO, V; MAZOUFFRE, S et al.EUROMECH conference. 2002, pp 161-162, 2 p.Conference Paper

Intensity distribution of the focal lines of the prepulse and mainpulse at the solid target surfacePRÄG, A. R; MOCEK, T; RUS, B et al.Journal de physique. IV. 2001, Vol 82, pp Pr2.601-Pr2.604, issn 1155-4339Conference Paper

Equation of matter state in the average-ion model for a laser-produced plasmaBEL'KOV, S. A; BONDARENKO, S. V; MITROFANOV, E. I et al.Quantum electronics (Woodbury). 2000, Vol 30, Num 11, pp 963-969, issn 1063-7818Article

Plasma formation thresholds of solid targets irradiated with laser pulses of ∼ 10-12 and ∼ 10-10 s duration (wavelength λ = 1.06 μm)FEDYUSHIN, B. T; GOLOVIN, A. F; MATAFONOV, A. P et al.Quantum electronics (Woodbury). 1998, Vol 28, Num 6, pp 535-538, issn 1063-7818Article

Three-dimensional number density mapping in the plume of a low-temperature laser-ablated magnesium plasmaMARTIN, G. W; DOYLE, L. A; AL-KHATEEB, A et al.Applied surface science. 1998, Vol 127-29, pp 710-715, issn 0169-4332Conference Paper

Structure of a steady-state corona formed by irradiation of a cylindrical targetAFANAS'EV, YU. V; KLIMOV, V. V; TYBULEWICZ, A et al.Quantum electronics (Woodbury). 1997, Vol 27, Num 4, pp 330-333, issn 1063-7818Article

Shock generation by laser-driven ablationYU, W; XU, Z; CHEN, J. Z et al.Journal of physics. D, Applied physics (Print). 1996, Vol 29, Num 6, pp 1515-1519, issn 0022-3727Article

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