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Ananyeva Marina Vladimirovna

Publications in Math-Net.Ru

  1. An optoacoustic study and simulation of the optical properties of cyclotrimethylenetrinitramine–ultrafine nickel particle composites

    Optics and Spectroscopy, 128:5 (2020),  659–668
  2. Modeling of optoacoustic signals in a system with elastic scattering and light absorption

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:7 (2019),  45–48
  3. Effect of multiple scattering on the critical density of the energy of the PETN – aluminium compound initiated by a neodymium laser pulse

    Fizika Goreniya i Vzryva, 53:1 (2017),  92–104
  4. Paradox of small particles in the pulsed laser initiation of explosive decomposition of energetic materials

    Fizika Goreniya i Vzryva, 52:2 (2016),  122–129
  5. Spatial and temporal characteristics of detonation wave propagation in silver azide

    Fizika Goreniya i Vzryva, 51:3 (2015),  76–81
  6. The optical properties of the cobalt nanoparticles in the transparent condensed matrices

    Nanosystems: Physics, Chemistry, Mathematics, 6:5 (2015),  628–636
  7. Synthesis of copper nanoparticles for use in an optical initiation system

    Nanosystems: Physics, Chemistry, Mathematics, 6:3 (2015),  361–365
  8. Miro-hotspot model for the laser initiation of explosive decomposition of energetic materials with melting taken into account

    Fizika Goreniya i Vzryva, 50:6 (2014),  92–99
  9. Influence of laser wavelength on the critical energy density for initiation of energetic materials

    Fizika Goreniya i Vzryva, 50:3 (2014),  98–104
  10. Spectral regularities of the critical energy density of the pentaerythriol tetranitrate-aluminum nanosystems initiated by the laser pulse

    Nanosystems: Physics, Chemistry, Mathematics, 5:6 (2014),  803–810
  11. Regularities of light diffusion in the composite material pentaerythriol tetranitrate – nickel

    Nanosystems: Physics, Chemistry, Mathematics, 5:5 (2014),  685–691
  12. Critical initiation-energy density as a function of single-crystal size in explosive decomposition of silver azide

    Fizika Goreniya i Vzryva, 44:2 (2008),  76–78


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