Rayleigh–Taylor instability of high-velocity condensed-matter liners

Author:

Garanin S. F.,Buyko A. M.,Yakubov V. B.

Publisher

Pleiades Publishing Ltd

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference46 articles.

1. R. E. Reinovsky, W. E. Anderson, W. L. Atchison, et al., “Pulsed Power Hydrodynamics: a New Application of High Magnetic Field,” in Proc. of the 9th Intern. Conf. on Megagauss Magnetic Field Generation and Related Topics, Moscow — St.-Petersburg, 2002 (Inst. Exp. Phys., Sarov, 2004), pp. 696–705.

2. R. E. Reinovsky, W. L. Atchison, C. Rousculp, and A. Kaul, “Pulsed High Magnetic Fields for Exploring the Dynamic Properties of Materials,” in Proc. of the 13th Intern. Conf. on Megagauss Magnetic Field Generation and Related Topics, Suzhou (China), July 6–9, 2010 (Nat. Univ. Defense Technol., Chángsha, 2012), pp. 44–45.

3. G. Boffetta and A. Mazzino, “Incompressible Rayleigh–Taylor Turbulence,” Annual Rev. Fluid Mech. 49, 119–143 (2017).

4. A. L. Velikovich, “Mitigation of Rayleigh–Taylor Instability in High-Energy Density Plasmas. A Personal Perspective,” in Abstr. book of the 42nd IEEE Intern. Conf. on Plasma Science, Belek, Antalya (Turkey), May 24–28, 2015 (IEEE, 2015), p. 621.

5. G. I. Taylor, “The Instability of Liquid Surfaces when Accelerated in a Direction Perpendicular to their Planes. 1,” Proc. Roy. Soc. London. Ser. A 201 (1065), 192–196 (1950).

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