Three-dimensional numerical model of interaction of the laser radiation with plasma of plastic target
Matematičeskoe modelirovanie, Tome 30 (2018) no. 4, pp. 43-65.

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In a three-dimensional model of interaction of powerful electromagnetic field with a supercritical plasma density by numerical solution of the equations of Vlasov–Maxwell has been obtained effect of the generation of high-energy protons and a nuclei of carbon for the first time opening in experiments in 2000 on the Petawatt laser Lawrence Livermore National Laboratory (USA).
Mots-clés : Vlasov
Keywords: Maxwell, electromagnetic field, laser radiation, high energy protons and nuclei carbons, relativistic electrons.
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V. S. Imshennik; S. L. Ginzburg; V. T. Zhukov; V. F. Dyachenko. Three-dimensional numerical model of interaction of the laser radiation with plasma of plastic target. Matematičeskoe modelirovanie, Tome 30 (2018) no. 4, pp. 43-65. http://geodesic.mathdoc.fr/item/MM_2018_30_4_a2/

[1] S.P. Hatchett, C.G. Brown, T.E. Cowan et al., “Electron, photon and ion beams from the relativistic interaction of Petawatt laser pulses with solid targets”, Physics of Plasmas, 7:5-2 (2000), 2076–2082 | DOI

[2] S.L. Ginzburg, V.F. Dyachenko, V. S. Imshennik, “3D Model of the Interaction between Powerful Laser Radiation and Supercritical Density Plasma and the Generation of High Energy Protons”, Mathematical Models and Computer Simulations, 7:3 (2015), 203–213 | DOI | MR

[3] V.S. Imshennik, S.L. Ginzburg, V. F. Dyachenko, “Three-Dimensional Simulation for the Kinetics of Electron-Proton Plasma with Supercritical Density in a Powerful Electromagnetic Field of Laser Radiation”, Mathem. Mod. and Comp. Simul., 8:1 (2016), 40–53 | DOI | MR

[4] V.F. Diachenko, V.S. Imshennik, “Ob anomalnom vzaimodeistvii moshchnykh svetovykh potokov s plotnoi plazmoi”, Fizika plazmy, 5 (1979), 737–744

[5] H. Daido, M. Nishiuchi, A.S. Pirozhkov, “Review of Laser-driven ion sources and their applications”, Rep. Prog. Phys., 75 (2012), 056401, 71 pp. | DOI

[6] L.D. Landau, L.P. Pitaevskii, E.M. Lifshitz, Electrodynamics of Continuous Media, v. 8, Course of Theoretical Physics S, Second Edition, Pergamon Press, 1984 | MR

[7] S.L. Ginzburg, V.F. Dyachenko, V.S. Imshennik, V. V. Paleychik, “Three-Dimensional Simulations of Anomalous Absorption of Laser Radiation by Plasma with Supercritical Density”, Plasma Physics Reports, 38:2 (2012), 153–168 | DOI

[8] L.D. Landau, L.P. Pitaevskii, E.M. Lifshitz, Electrodynamics of Continuous Media, v. 5, Course of Theoretical Physics S, Second Edition, Pergamon Press, 1984 | MR

[9] R.I. Ilkaev, S.G. Garanin, “Issledovanie problem termoiadernogo sinteza”, Vestnik RAN, 76 (2006), 503–516

[10] S.L. Ginzburg, V.F. Diachenko, V.V. Paleichik, “3D raschety pogloshcheniia elektromagnitnoi volny plazmoi”, Keldysh Institute preprints, 2009, 001, 12 pp.

[11] S.L. Ginzburg, V.F. Diachenko, V.S. Imshennik, V.V. Paleichik, “Ob anomalnom pogloshchenii svetovykh potokov plotnoi plazmoi”, VANT, Seriia: Teoreticheskaia i prikladnaia fizika, 2007, no. 2–3, 53–57

[12] V.F. Diachenko, “O raschetakh zadach besstolknovitelnoi plazmy”, ZhVM i MF, 1985, no. 4, 622–627

[13] V.F. Diachenko, Desiat lektsii po fizicheskoi matematike, Faktorial, M., 1997, 64 pp.;

[14] Fizicheskii entsiklopedicheskii slovar, Sovetskaia entsiklopediia, M., 1983, 791; 796

[15] V.S. Imshennik, S.L. Ginzburg, V.F. Diachenko, “Trekhmernaia model vzaimodeistviia moshchnogo lazernogo izlucheniia s plazmoi sverkhkriticheskoi plotnosti v plastikovoi misheni”, Keldysh Institute preprints, 2016, 041, 32 pp.