1. M. V. Leont’eva-Smirnova, A. N. Agafonov, G. N. Ermolaev, A. G. Ioltukhovskii, E. M. Mozhanov, L. I. Reviznikov, V. V. Tsvelev, V. M. Chernov, T. M. Bulanova, V. N. Golovanov, Z. O. Ostrovskii, V. K. Shamardin, A. I. Blokhin, M. B. Ivanov, E. N. Kozlov, Yu. R. Kolobov, and B. K. Kardashev, “Microstructure and mechanical properties of low-activated EK-181 (RUSFER-EK-181) ferritic-martensitic steel,” Perspekt. Mater., No. 6, 40–52 (2006).
2. V. M. Chernov, M. V. Leonteva-Smirnova, M. M. Potapenko, N. I. Budylkin, Yu. N. Devyatko, A. G. Ioltoukhovskiy, E. G. Mironova, A. K. Shikov, A.B. Sivak, G. N. Yermolaev, A. N. Kalashnikov, B. V. Kuteev, A. I. Blokhin, N. I. Loginov, V. A. Romanov, V. A. Belyakov, I. R. Kirillov, T. M. Bulanova, V. N. Golovanov, V. K. Shamardin, Yu. S. Strebkov, A. N. Tyumentsev, B. K. Kardashev, O. V. Mishin, and B. A. Vasiliev, “Structural materials for fusion power reactors-The RF R&D activities,” Nuclear Fusion, No. 47, 839–848 (2007).
3. D. A. Blokhin, M. V. Leont’eva-Smirnova, V. M. Chernov, A. I. Blokhin, N. A. Demin, and I. A. Sipachev, “Nuclear physical properties of EK-181 ferritic-martensitic steel under prolonged neutron irradiation in fast BN-600 and thermo-nuclear DEMO-RF reactors,” Perspekt. Mater., No. 4, 26–33 (2010).
4. A. N. Tyumentsev, V. M. Chernov, M. V. Leont’eva-Smirnova, E. G. Astafurova, N. A. Shevyako, and I. Yu. Litovchenko, “Microstructure of EK-181 ferritic-martensitic steel after heat treatment under various conditions,” Tech. Phys. 57, 48–54 (2012).
5. J. L. Boutard, S. Dudarev, and M. Rieth, “Modeling structural and plasma facing materials for fusion power plants: Recent advances and outstanding issues in the EURATOM fusion materials program,” J. Nucl. Mater. 412, 1042–1049 (2011).