1. 1. B.A. Shilyaev et al. Compton detector of neutrons for the energy yield control in the active zone of WWER. Problems of Atomic Science and Technologies (PAST) 2(108) (2017) 75. http://vant.kipt.kharkov.ua/ARTICLE/VANT_2017_2/article_2017_2_75.pdf
2. 2. B.A. Shilyaev et al. Hafnium in Nuclear Power Industry: The Evolution of Increasing of the Economic Indicators and the Operation Safety of Pressurized Water Nuclear Reactors. Problems of Atomic Science and Technologies (PAST) 1(113) (2018) 43. http://vant.kipt.kharkov.ua/ARTICLE/VANT_2018_1/article_2018_1_43.pdf
3. 3. K.V. Kovtun et al. Hafnium - a material for the system of excess reactivity compensation in nuclear power reactors. Problems of Atomic Science and Technology (PAST) 2(84) (2013) 118. http://vant.kipt.kharkov.ua/ARTICLE/VANT_2013_2/article_2013_2_118.pdf
4. 4. V.D. Risovanyi et al. Parameters and Structure of the Primary Radiation Damage of Hafnium in the Core of a Nuclear Reactor. Materials of Scientific Conf. "New Materials for Innovation Development of Nuclear Power Engineering", Dmitrovgrad, Russia, March 24 - 27, 2014 (Dmitrovgrad, 2014) p. 18. (Rus)
5. 5. Yu.M. Semchenkov, V.A. Mil'to, B.E. Shumskii. Incorporation of the procedure for monitoring coolant boiling in a VVER-1000 core into the in-reactor noise diagnostics system. Atomic Energy 105(2) (2008) 99. https://doi.org/10.1007/s10512-008-9071-4