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   Plasma Physics (including Thermonuclear Fusion).
      Inertial (nonmagnetic) plasma confinement.
         Ohter topics and problems.
Особенности поведения плазменной области, образуемой взрывом в верхней атмосфере на высотах 100_-120 км
Лавриненко Н.Е./Репин А.Ю./Ступицкий Е.Л./Холодов А.С.
Мат. моделир., Vol: 19, No: 5 , published: 16 May 2007
Complete coverage of worldwide fusion developments

Fusion Power Rept., Vol: 21, No: 11-12 , 1999
Nuclear fusion in charge-asymmetric muonic molecules
Czaplinski W., Kravtsov A., Mikhailov A., Popov N.
Eur. Phys. J. D, Vol: 3, No: 3 , 1998
The fast ignitor
Meyer-ter-Vehn Jurgen, Atzeni Stefano
Europhys. News, Vol: 29, No: 6 , 1998
Complete monthly coverage of worldwide fusion developments

Fusion Power Rept., Vol: 19, No: 1-2 , 1998
Fusion Power Rept

Fusion Power Rept., Vol: 19, No: 11-12 , 1998
Complete monthly coverage of worldwide fusion developments

Fusion Power Rept., Vol: 19, No: 9-10 , 1998
Reflections on the past and future of fusion and plasma physics research
Vandenplas P.E.
Plasma Phys. and Contr. Fusion, Vol: 40, No: Suppl , 1998
Cylindrical targets for the fast igniter scheme
Kingham R.J., Bell A.R., Hall T.A.
Plasma Phys. and Contr. Fusion, Vol: 38, No: 10 , 1996
Cylindrical targets for the fast igniter scheme
Kingham R.J., Bell A.R., Hall T.A.
Plasma Phys. and Contr. Fusion, Vol: 38, No: 10 , 1996
Plasma dynamics in a magnetically insulated target for inertial fusion
Aslan N., Kammash T.
Fusion Technol. 1992. 21, N, Vol: 26, No: 2 , 1994
The Impact of Hydrodynamic Mixing on Supernova Progenitors
Patrick A. Young, Casey Meakin, David Arnett, Chris L. Fryer
AstroPhys. , Vol: 2, No: t2
Single-event high-compression inertial confinement fusion at low temperatures compared with two-step fast ignitor
Hora H., Miley G.H., Osman F., et al.
J. Plasma Phys., Vol: 69, No: 5
Приближение линейного шума для вычисления неравновесных флуктуаций чисел заполнения в радиационно-столкновительных моделях среднего иона
Гаспарян П.Д., Горшихин А.А.
Физ. плазмы, Vol: 29, No: 5
Cost of electricity difference for direct and indirect drive targets for inertial fusion energy using a diode pumped solid state laser driver
Orth C.D.
Nucl. Fusion, Vol: 42, No: 3
Nonlinear Theory of the Ablative Rayleigh-Taylor Instability
Sanz J., Ramirez J., Ramis R., Betti R., Town R. P. J.
Phys. Rev. Lett., Vol: 89, No: 19
Measurements of strongly localized potential well profiles in an inertial electrostatic fusion neutron source
Yoshikawa K. et al.
Nucl. Fusion, Vol: 41, No: 6
Presentation simple de la pression emise par un transducteur focalisant
Rguiti Mohamed et al.
C. R. Acad. Sci. Ser. 1, Vol: 1, No: 6
Wire-array z pinches as intense x-ray sources for inertial confinement fusion
Spielman R.B., Deeney C., Douglas M.R. et al.
Plasma Phys. and Contr. Fusion, Vol: 42, No: 12