1. V. M. Astashinskii, S. I. Ananin, V. V. Askerko, E. A. Kostyukevich, A. M. Kuz’mitskii, V. V. Uglov, V. M. Anishchik, V. V. Astashinskii, N. T. Kvasov, and A. L. Danilyuk, Influence of compression plasma flows on carbon steel and silicon, Vakuum. Tekh. Tekhnol., 12, No. 2, 91–94 (2002).
2. V. M. Anishchik, V. V. Uglov, V. V. Astashynski, V. M. Astashynski, S. I. Ananin, E. A. Kostyukevich, A. M. Kuzmitski, N. T. Kvasov, A. L. Danilyuk, and I. N. Rumianceva, Compressive plasma flow interaction with steel surface: structure and mechanical properties of modified layer, Vacuum, 70, Issues 2–3, 269–274 (2003).
3. V. M. Astashynski, S. I. Ananin, V. V. Askerko, E. A. Kostyukevich, A. M. Kuzmitski, V. V. Uglov, V. M. Anishchik, V. V. Astashynski, N. T. Kvasov, and L. A. Danilyuk, Materials surface modification using quasistationary plasma accelerators, Surf. Coat. Technol., 180–181C, 392–395 (2004).
4. A. K. Vinogradova and A. I. Morozov, Stationary compression flows, in: A. I. Morozov (Ed.), Physics and Application of Plasma Accelerators [in Russian], Nauka i Tekhnika, Minsk (1974), pp. 103–142.
5. V. M. Astashinskii, G. I. Bakanovich, and L. Ya. Min’ko, Investigation of the dynamics of plasma formation and of the compression region of a gas magnetoplasma compressor, Zh. Prikl. Spektrosk., 33, Issue 4, 629–633 (1980).