\RBibitem{Zab65}
\by Е.~И.~Забабахин
\paper Кумуляция энергии и ее границы
\jour УФН
\yr 1965
\vol 85
\issue 4
\pages 721--726
\mathnet{http://mi.mathnet.ru/ufn11804}
\crossref{https://doi.org/10.3367/UFNr.0085.196504f.0721}
\transl
\jour Phys. Usp.
\yr 1965
\vol 8
\issue 2
\pages 295--298
\crossref{https://doi.org/10.1070/PU1965v008n02ABEH003044}
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/ufn11804
https://www.mathnet.ru/rus/ufn/v85/i4/p721
Эта публикация цитируется в следующих 16 статьяx:
Philipp I. Vysikaylo, “Shock Waves of Electric Field—Part 1: Theoretical Studies of Vysikaylo's Jumps and Plasma Nozzles in Plasma With Current”, IEEE Trans. Plasma Sci., 53:3 (2025), 364
O. V. Rudenko, “Nonlinear Acoustic Waves in Liquids with Gas Bubbles: A Review”, Phys. Wave Phen., 30:3 (2022), 145
S. Anishchenko, V. Baryshevsky, A. Gurinovich, 8th International Congress on Energy Fluxes and Radiation Effects, 2022, 103
Sergey G. Chefranov, “Instability of cumulation in converging cylindrical shock wave”, Physics of Fluids, 33:9 (2021)
A V Shutov, “Two-dimensional optimal jetless solutions for hypervelocity impact and shock waves interaction”, J. Phys.: Conf. Ser., 1147 (2019), 012030
A V Shutov, “Optimal shape of the striker for jetless hypervelocity impact”, J. Phys.: Conf. Ser., 946 (2018), 012053
В. Ф. Куропатенко, “Коллапс сферических полостей и кумуляция энергии в идеальной сжимаемой жидкости”, Физика горения и взрыва, 51:1 (2015), 57–65; V. F. Kuropatenko, “Collapse of spherical cavities and energy cumulation in an ideal compressible liquid”, Combustion, Explosion and Shock Waves, 51:1 (2015), 45–52
V. A. Borisenok, “Sonoluminescence: Experiments and models (Review)”, Acoust. Phys., 61:3 (2015), 308
В. Е. Фортов, И. В. Ломоносов, “Я.Б. Зельдович и проблемы уравнений состояния вещества в экстремальных условиях”, УФН, 184:3 (2014), 231–245; V. E. Fortov, I. V. Lomonosov, “Ya B Zeldovich and equation of state problems for matter under extreme conditions”, Phys. Usp., 57:3 (2014), 219–233
D. Shafer, G. R. Toker, V. Tz. Gurovich, S. Gleizer, Ya. E. Krasik, “Peculiarity of convergence of shock wave generated by underwater electrical explosion of ring-shaped wire”, Physics of Plasmas, 20:5 (2013)
В. Б. Розанов, “О возможности сферического сжатия мишеней с термоядерным горючим при использовании для облучения двух лазерных пучков”, УФН, 174:4 (2004), 371–382; V. B. Rozanov, “Feasibility of spherical fusion target compression under two-beam laser irradiation”, Phys. Usp., 47:4 (2004), 359–370
H. E. Wilhelm, “Hyperbolic theory of electromagnetic cumulation in cylindrical liner implosions”, Phys. Rev. A, 27:3 (1983), 1515
T. V. Belyaeva, P. I. Golubnichii, P. I. Dyadyushkin, Yu. I. Lysikov, “Laser sonoluminescence in water under increased hydrostatic pressure”, J Appl Mech Tech Phys, 22:4 (1982), 461
F. Cornolti, F. Giammanco, A. Giulietti, “Shock waves from laser-produced breakdown: Experimental study of their reflection in an acoustic cavity”, Lett. Nuovo Cimento, 19:5 (1977), 165
�. I. Andriankin, V. K. Bobolev, A. V. Dubovik, “Shock-initiated implosion of an elliptical cavity and detonation in a liquid layer”, J Appl Mech Tech Phys, 12:5 (1973), 699
R. Knystautas, J.H. Lee, “Experiments on the stability of converging cylindrical detonations”, Combustion and Flame, 16:1 (1971), 61