Compact Accelerator-Based Fast Neutron Source for the Radiation Testing of Promising Materials

Author:

Abdrashitov G. F.,Kapitonov V. A.,Kolesnikov Ia. A.,Savinov S. S.,Singatulina N. Sh.,Singatulin Sh. R.,Sorokin I. N.,Taskaev S. Yu.

Publisher

Pleiades Publishing Ltd

Reference19 articles.

1. S. Taskaev, “Development of an accelerator-based epithermal neutron source for boron neutron capture therapy,” Phys. Part. Nucl. 50, 569–575 (2019)

2. Neutron Capture Therapy: Principles and Applications, Ed. by W. Saurwein, A. Wittig, R. Moss, and Y. Nakagawa (Springer, Berlin, 2012).

3. B. Bayanov, V. Belov, E. Bender, M. Bokhovko, G. Dimov, V. Kononov, O. Kononov, N. Kuksanov, V. Palchikov, V. Pivovarov, R. Salimov, G. Silvestrov, A. Skrinsky, and S. Taskaev, “Accelerator based neutron source for the neutron-capture and fast neutron therapy at hospital,” Nucl. Instrum. Methods Phys. Res., Sect. A 413, 397–426 (1998).

4. L. Zaidi, M. Belgaid, S. Taskaev, and R. Khelifi, “Beam shaping assembly design of 7Li(p,n)7Be neutron source for boron neutron capture therapy of deep-seated tumor,” Appl. Radiat. Isot. 39, 316–324 (2018).

5. E. Sato, A. Zaboronok, T. Yamamoto, K. Nakai, S. Taskaev, O. Volkova, L. Mechetina, A. Taranin, V. Kanygin, T. Isobe, B. Mathis, and A. Matsumura, “Radiobiological response of U251MG, CHO-K1 and V79 cell lines to accelerator-based boron neutron capture therapy,” J. Radiat. Res. 59, 101–107 (2018).

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