-
[1]
U. Fischer, P. Batiston, E. Cheng et al., AIP Conf. Proc., 769, 1478 (2005)
-
[2]
C. D. Bowman, Annual Review of Nuclear and Particle Science 48, 505 (1998)
-
[3]
V. Semkova, V. Avrigeanu, T. Glodariu et al., Nucl. Phys. A 730, 255 (2004)
-
[4]
C. Whitmarsh, 1962 Review of Zircaloy-2 and Zircaloy-4 properties relevant to NS Savannah reactor design, (Oak Ridge National Laboratory for the US Atomic Energy Commission)
-
[5]
D. L. Mollin, 1962 Vitamin-b12 Metabolism in Man Using Cobalt 58 (58Co) as a Tracer
-
[6]
A. Gandhi, A. Sharma, A. Kumar et al., Phys. Rev. C 102, 014603 (2020)
-
[7]
V. Zerkin and B. Pritychenko, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 888, 31 (2018)
-
[8]
A. J. Koning, S. Hilaire, and M. C. Duijvestijn, 2007 Talys-1.0 International Conference on Nuclear Data for Science and Technology, (EDP Sciences) pp 211–214
-
[9]
D. A. Brown, M. Chadwick, R. Capote et al, Nuclear Data Sheets 148, 1 (2018)
-
[10]
A. J. Plompen, O. Cabellos, C. De Saint Jean et al, Eur. Phys. J. A 56, 1 (2020)
-
[11]
K. Shibata, O. Iwamoto, T. Nakagawa et al, Journal of Nuclear Science and Technology 48, 1 (2011)
-
[12]
Z. Ge, R. Xu, H. Wu et al., EPJ Web of Conferences 239, 09001 (2020)
-
[13]
R. Pachuau, B. Lalremruata, N. Otuka et al., Nuclear Science and Engineering 187, 70 (2017)
-
[14]
J. Meadows and D. Smith, 1972 Neutrons from proton bombardment of natural lithium, Tech. rep. Argonne National Lab., Ill.
-
[15]
A. Bakshi, S. Dawn, S. Suryanarayana et al., Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 949, 162926 (2020)
-
[16]
L. Punte, B. Lalremruata, N. Otuka et al, Phys. Rev. C 95, 024619 (2017)
-
[17]
A. Gandhi, A. Sharma, R. Pachuau et al., Eur. Phys. J. A 57, 1 (2021)
-
[18]
2022 National nuclear data center, information extracted from the nudat database, accessed: 2022-06-25
-
[19]
T. Vidmar, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 550, 603 (2005)
-
[20]
A. Trkov, P. J. Griffin, S. Simakov et al, Nuclear Data Sheets 163, 1 (2020)
-
[21]
A. Hingu, B. Soni, S. Parashari et al, Radiation Physics and Chemistry 199, 110270 (2022)
-
[22]
S. Parashari, S. Mukherjee, S. Suryanarayana et al., Phys. Rev. C 99, 044602 (2019)
-
[23]
N. Otuka, B. Lalremruata, M. Khandaker et al., Radiation Physics and Chemistry 140, 502 (2017)
-
[24]
D. Millsap and S. Landsberger, Applied Radiation and Isotopes 97, 21 (2015)
-
[25]
B. Shivashankar, S. Ganesan, H. Naik et al., Nuclear Science and Engineering 179, 423 (2015)
-
[26]
A. Koning and J. Delaroche, Nucl. Phys. A 713, 231 (2003)
-
[27]
W. Hauser and H. Feshbach, Phys. Rev. 87, 366 (1952)
-
[28]
C. Kalbach, Phys. Rev. C 33, 818 (1986)
-
[29]
A. Gilbert and A. Cameron, Canadian Journal of Physics 43, 1446 (1965)
-
[30]
W. Dilg, W. Schantl, H. Vonach et al., Nucl. Phys. A 217, 269 (1973)
-
[31]
A. Ignatyuk, K. Istekov, and G. Smirenkin, 1979 Sov. J. Nucl. Phys.(Engl. Transl.); (United States) 30
-
[32]
A. Ignatyuk, J. Weil, S. Raman et al., Phys. Rev. C 47, 1504 (1993)
-
[33]
S. Goriely, S. Hilaire, and A. J. Koning, Phys. Rev. C 78, 064307 (2008)
-
[34]
S. Hilaire, M. Girod, S. Goriely et al., Phys. Rev. C 86, 064317 (2012)
-
[35]
F. S. Chang, J. B. French, and T. H. Thio, Annals of Physics 66, 137 (1971)
-
[36]
J. French and K, Ratcliff, Phys. Rev. C 3, 94 (1971)
-
[37]
V. Kota and K. Kar, Pramana 32, 647 (1989)
-
[38]
V. Kota and D. Majumdar, Nucl. Phys. A 604, 129 (1996)
-
[39]
M. Horoi, J. Kaiser, and V. Zelevinsky, Phys. Rev. C 67, 054309 (2003)
-
[40]
M. Horoi, M. Ghita, and V. Zelevinsky, Phys. Rev. C 69, 041307 (2004)
-
[41]
T. Sangeeta, Ghosh, B. Maheshwari, G. Saxena et al., Phys. Rev. C 105, 044320 (2022)
-
[42]
W. Ormand and B. Brown, Phys. Rev. C 102, 014315 (2020)
-
[43]
I. Pasha, B. Rudraswamy, Y. Sheela et al, Indian Journal of Pure & Applied Physics (IJPAP) 58, 241 (2022)
-
[44]
S. Parashari, S. Mukherjee, H. Naik et al., The European Physical Journal A 55, 1 (2019)
-
[45]
A. Filatenkov, 2016 INDC (CCP)-0460
-
[46]
B. Shivashankar, H. Naik, S. Suryanarayana et al., Journal of Radioanalytical and Nuclear Chemistry 292, 745 (2012)
-
[47]
F. Zhou, X. Xiao, K. Fang et al., Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 269, 642 (2011)
-
[48]
W. Mannhart and D. Schmidt, 2007 Measurement of neutron activation cross sections in the energy range from 8 MeV to 15 MeV, Tech. Rep. Karlsruhe Institute of Technology
-
[49]
A. Harun-Ar-Rashid, M. Khandaker, M. Islam et al, Indian Journal of Physics 80, 737 (2006)
-
[50]
M. Bhike, A. Saxena, B. Nayak et al. 2006 Measurement of (n, p) reaction cross sections with mev neutrons, Proceedings of the DAE-BRNS symposium on nuclear physics: V. 51
-
[51]
T. Shimizu, H. Sakane, M. Shibata et al., Annals of Nuclear Energy 31, 975 (2004)
-
[52]
T. Senga, H. Sakane, M. Shibata et al., 2000 Measurement of neutron activation cross sections in the energy range between 2 and 7 mev by using a ti-deuteron target and a deuteron gas target, Tech. Rep. Japan Atomic Energy Research Institute