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On the problem of the oblique interaction of a detonation wave with an explosivemetal interface
Their understanding at atomistic level
Experimental molecular spectroscopy in shockcompressed materials
51 other sections not shown
aluminum atoms behavior calculated Chem chemical copper crystal curve deformation density detonation diameter dissociation dynamic effect elastic electron Elsevier Science Publishers energy equation Eulerian experimental experiments explosive FIGURE function gauge Gupta high pressure Holian Hugoniot impact impactor increase initial interaction interface isentropic kbar kinetic km/s Lagrangian laser light gas gun Livermore magnetic manganin material Mbar measurements mechanical metal microstructure molecular dynamics molecules N.C. HOLMES editors numerical observed obtained parameters particle velocity peak PETN phase transition Phys plastic PMMA powder profiles projectile propagation pulse R. A. Graham Raman reaction rutile S.C. SCHMIDT sample Sandia National Laboratories Science Publishers B.V. shear bands shock compression shock front shock loading shock pressure shock wave shock-induced shock-wave shown in Fig shows simulations solid spall specimen spectra strain rate streak camera stress structure superconducting tantalum target TATB technique temperature thermal thickness tion values Waves in Condensed yield yield strength ytterbium