-
[1]
Karolina Kolos, Vladimir Sobes, Ramona Vogt et al., Phys. Rev. Research 4, 021001 (2022)
-
[2]
I. Ruskov, Yu. Kopatch, V. Bystritsky et al., EPJ Web Conf. 146, 03024 (2017)
-
[3]
I. Ruskov, Yu. Kopach, V. Bystritsky et al., EPJ Web Conf. 256, 00014 (2021)
-
[4]
V. Valkovic, in 14 MeV Neutrons: Physics and Application, Vol. 2, edited by Vladivoj Valkovic (Boca Raton: CRC Press, 2016), p. 17
-
[5]
V. Valkovic, in 14 MeV Neutrons: Physics and Application, Vol. 7, edited by Vladivoj Valkovic (Boca Raton: CRC Press, 2016), p. 256
-
[6]
I. Bolshakov, M. Kolesnik, M. Sorokin et al., Int. J. Miner. Process. Extr. Metall. 5(4), 54 (2020)
-
[7]
V. Y. Alexakhin, A. I. Akhunova, E. A. Razinkov et al., Phys. Atom. Nuclei 85, 1866 (2022)
-
[8]
S. Bishnoi, T. Patel, R. G. Thomas et al., Eur. Phys. J. Plus 135, 428 (2020)
-
[9]
D. N. Grozdanov, N. A. Fedorov, V. M. Bystritski et al., Phys. Atom. Nuclei 81, 588 (2018)
-
[10]
N. A. Fedorov, T. Y. Tretyakova, V. M. Bystritsky et al., Phys. Atom. Nuclei 82, 343 (2019)
-
[11]
N. A. Fedorov, D. N. Grozdanov, Y. N. Kopatch et al., Eur. Phys. J. A 57, 194 (2021)
-
[12]
I. D. Dashkov, N. A. Fedorov, D. N. Grozdanov et al., Bull. Russ. Acad. Sci. Phys. 86, 893 (2022)
-
[13]
Y. N. Kopach and M. G. Sapozhnikov, Phys. Part. Nuclei 55, 55 (2024)
-
[14]
Y. N. Kopatch, D. N. Grozdanov, N. A. Fedorov et al., Phys. Part. Nuclei Lett. 22, 276 (2025)
-
[15]
V. E. Scherrer, R. B. Theus, and W. R. Faust, Phys. Rev. 91, 1476 (1953)
-
[16]
J. Benveniste, A. C. Mitchell, C. D. Schrader et al., Nucl. Phys. 19, 448 (1960)
-
[17]
D. T. Stewart and P. W. Martin, Nucl. Phys. 60(2), 349 (1964)
-
[18]
I. L. Morgan, J. B. Ashe, D. O. Nellis, Div. of Tech. Info. U.S. AEC Reports, No. 22012, (Texas Nuclear Corp., Austin, TX, USA, 1964), p.158; EXFOR data: https://www-nds.iaea.org/EXFOR/12695
-
[19]
F. C. Engesser and W. E. Thompson, J. Nucl. Energy 21(6), 487 (1967)
-
[20]
G. Clayeux, G. Grenier, Saclay Reports, No.3807, (Centre d'Etudes de Limeil, Villeneuve-Saint-Georges, France, Centre d`Etudes Nucleaires, 1969)
-
[21]
T.C. Martin, G.H. Williams, Oak Ridge Operations Office, contract report, No. 2791-32, (Texas Nuclear Corp., Austin, TX, USA, 1971), p.7
-
[22]
D. Spaargaren and C. C. Jonker, Nucl. Phys. A 161(2), 354 (1971)
-
[23]
V. C. Rogers, V. J. Orphan, C. G. Hoot et al., Nucl. Sci. Eng. 58(3), 298 (1975)
-
[24]
V. M. Bezotosnyi, V. M. Gorbachev, L. M. Suvorov et al., Yad. Konst. 19, 7 (1975)
-
[25]
S. Zong-Ren et al., Chin. J. Nucl. Phys. 1, 45 (1979)
-
[26]
Y. Hino, S. Itagaki, T. Yamamoto et al., Dept. of Nucl. Engineering Reports, No. 34, (Tohoku Univ., Sendai, Japan, 1979)
-
[27]
I. Murata, J. Yamamoto, A. Takahashi, Differential cross sections for gamma-ray production by 14 MeV neutrons with several elements in structural materials, in Proceedings of the International Conference on Nuclear Data for Science and Technology held at Mito, Japan, May 30-June 3, edited by S.Igarasi, (Japan: Japan Atomic Energy Research Institute, 1988), p. 275 https://wwwndc.jaea.go.jp/nd1988/
-
[28]
H. Zhou,Y. Yan, Tanglin, Wen Shenlin et al., Chin. J. Nucl. Phys. 11(2), 63 (1989)
-
[29]
K. Hasegawa, M. Mizumoto, S. Chiba et al., Gamma-ray production cross section measurements of some structural materials between 7.8 and 13.0 MeV, in Proceedings of the International Conference on Nuclear Data for Science and Technology, held at the Forschungszentrum Julich, Fed. Rep. of Germany, 13−17 May 1991, edited by Syed M. Qaim, (Germany: Springer-Verlag Berlin Heidelberg, 1992), p. 329 https://doi.org/10.1007/978-3-642-58113-7
-
[30]
A. I. Lashuk and I. P. Sadokhin, Vop. At. Nauki i Tekhn., Ser.Yaderno-Reak. Konstanty 1, 26 (1994)
-
[31]
I. M. Kadenko, V. A. Plujko, B. M. Bondar et al., Yaderna Fizika ta Energetika 17, 349 (2016)
-
[32]
A. M. McEvoy, H. W. Herrmann, Y. Kim et al., Phys. Rev. C 103, 064607 (2021)
-
[33]
K. J. Kelly, M. Devlin, J. M. O'Donnell et al., Phys. Rev. C 104, 064614 (2021)
-
[34]
K. J. Kelly, M. Devlin, J. M. O'Donnell et al., Phys. Rev. C 108, 014603 (2023)
-
[35]
J. M. Gordon, B. L. Goldblum, J. A. Brown et al., Phys. Rev. C 111, 044608 (2025)
-
[36]
J. K. Dickens, G. L. Morgan, G. T. Chapman et al., Nucl. Sci. Engineering 62, 515 (1977)
-
[37]
D. N. Grozdanov, Prusachenko, P. S., Fedorov et al., Eur. Phys. J. A 61, 224 (2025)
-
[38]
E. M. Burymov, Sov. J. Nucl. Phys. 9, 546 (1969)
-
[39]
V. N. Bochkarev and V. V. Nefedov, Sov. J. Nucl. Phys. 1, 574 (1965)
-
[40]
A. Pavlik, H. Hitzenberger-Schauer, H. Vonach et al., Phys. Rev. C 57, 2416 (1998)
-
[41]
S. Hlavac, M. Benovic, E. Betak et al., Cross Sections for Discrete
Ray Production in Interactions of 14.6 MeV Neutrons with Light and Medium Heavy Nuclei, IAEA Nucl. Data Section report to the I.N.D.C., Rep. No. 412, p.12 (1999), (IAEA, Vienna, Austria, 1999) http://www-nds.iaea.org/publications/indc/indc-nds-0412/\begin{document}$\gamma$\end{document} -
[42]
V. C. Rogers, V. J. Orphan, C. G. Hoot et al., Spectral gamma-ray production cross-section measurements from threshold to 20 MeV, in Proceedings of the Conference on Nuclear Cross Sections and Technology, Washington, USA, 1975, edited by Roald A. Schrack, Charles D. Bowman, (USA: Department of Commerce, National Bureau of Standards, Institute for Basic Standards, Center for Radiation Research, 1975), Vol. 2, p. 766 https://nvlpubs.nist.gov/nistpubs/Legacy/SP/nbsspecialpublication425v2.pdf
-
[43]
H. Zhou and G. Huang, Nucl. Sci. Eng. 125(1), 61 (1997)
-
[44]
K. Nyberg-Ponnert, B. Jonsson, and I. Bergqvist, Phys. Scr. 4, 165 (1971)
-
[45]
Z. Hongyu, T. Lin, Y. Yiming et al., Gamma ray production cross sections for the interactions of 14.9 MeV neutrons with C, Al, V, Fe and Nb at 90 degrees, Chinese report to the I.N.D.C., Rep. No INDC(CPR)-010/L, (IAEA NDC, Vienna, Austria, 1986) https://www-nds.iaea.org/publications/indc/indccpr010L.pdf.
-
[46]
J. T. Prud'homme, I. L. Morgan, J. H. MC. Crary et al., A study of neutrons and gamma rays from neutron induced reactions in several elements, Air Force Spec. Weap. Center Kirtland A.F.B. Repts., Rep. No 60-30, (Texas Nuclear Corp., Austin, Texas, USA, 1960).
-
[47]
P. W. Martin and D. T. Stewart, J. Nucl. Energy 19(6), 447 (1965)
-
[48]
U. Abbondanno, R. Giacomich, M. Lagonegro et al., J. Nucl. Energy 27(4), 4 (1973)
-
[49]
G. Grenier, B. Duchemin, and D. Parisot, Differential gamma-ray production cross sections measured in Si
, Cr\begin{document}$(n, X\gamma)$\end{document} and Ni\begin{document}$(n, X\gamma)$\end{document} reactions for incident neutrons between 3 and 7 MeV and also at 14.1 MeV (in French), Report from CEC-Countries and CEC to NEANDC, Rep. No. 161U, (CEA/DAM Ile-de-France, Bruyeres-le-Chatel, Arpajon, France, 1974) https://inis.iaea.org/records/jwywe-zwf06\begin{document}$(n, X\gamma)$\end{document} -
[50]
K. A. Connell and A. J. Cox, Int. J. Appl. Radiat. Isot. 26(2), 71 (1975)
-
[51]
D. M. Drake, E. D. Arthur, and M. G. Silbert, Nucl. Sci. Eng. 65(1), 1 (1978)
-
[52]
V. M. Bezotosnyj, V. M. Gorbachjov, M. S. Shvetsov et al., The spectra and formation cross-sections of the discrete gamma-lines in the nonelastic interaction of 14 MeV neutrons with Mg, Si, P, S, Ti and Zn nuclei (In Russian), USSR report to the I.N.D.C., Rep. No. INDC(CCP)-169_VOL_IV, (IAEA NDS, Vienna, Austria, 1980), p.21https://www-nds.iaea.org/publications/indc/indc-ccp-0169_vol_II.pdf
-
[53]
G. Fan, H. Zhou, X. Zhu et al., Progress in the Measurement of Gamma-Ray Production Cross Sections Induced by 14.9 MeV Neutrons, In: Qaim, S.M. (eds) In Proceedings of the International Conference on Nuclear Data for Science and Technology held at the Forschungszentrum Jülich, Fed. Rep. of Germany, 13-17 MaY 1991, edited by Syed M. Qaim, (Germany: Springer-Verlag Berlin Heidelberg, 1992), p. 332 https://doi.org/10.1007/978-3-642-58113-7_95
-
[54]
M. Drosg, R. C. Haight, and D. M. Drake, Double-differential gamma-ray production: cross sections and spectra of Al, Si and Fe for 8.51, 10.00, 12.24 and 14.24 MeV neutrons, Los Alamos Scientific Lab., Rep. No. 02-16, (Los Alamos National Laboratory, New Mexico, USA, 2002)
-
[55]
H.-Y. Zhou, F.-G. Deng, W. Cheng et al., Nucl. Instrum. Methods Phys. Res. A 648(1), 192 (2011)
-
[56]
A. Negret, C. Borcea, D. Bucurescu et al., Phys. Rev. C 88, 034604 (2013)
-
[57]
M. Boromiza, C. Borcea, P. Dessagne et al., Phys. Rev. C 101, 024604 (2020)
-
[58]
A. P. Arya, D. L. Campbell, and R. D. Wilson, Bull. Am. Phys. Soc. 12, HD4 (1967)
-
[59]
W. Breunlich, G. Stengl, and H. Vonach, Z. Naturforsch. A 26, 451 (1971)
-
[60]
G. L. Morgan and D. C. Larson, The Ti
reaction cross section for incident neutron energies between 0.3 and 20.0 MeV, Oak Ridge National Lab. technical memo, No.6323, (Oak Ridge National Laboratory, Oak Ridge, TN, USA, 1978) https://inis.iaea.org/records/806kn-26t18\begin{document}$(n, x\gamma)$\end{document} -
[61]
D. Dashdorj, P. E. Garret, J. A. Becker et al., AIP Conf. Proc. 769, 1035 (2005)
-
[62]
D. Dashdorj, G. E. Mitchell, J. A. Becker et al., Nucl. Sci. Eng. 157(1), 65 (2007)
-
[63]
A. Olacel, F. Belloni, C. Borcea et al., Phys. Rev. C 96, 014621 (2017)
-
[64]
H. O. M. Kinney, Inelastic scattering of 14.4 MeV Neutrons from several elements, Ph.D Thesis (Morgentown: University of West Virginia, WV, USA, 1972)
-
[65]
F. Voss, S. Cierjacks, D. Erbe et al., Measurement of the gamma-ray production cross section from inelastic neutron scattering in some chromium and nickel isotopes between 0.5 and 10 MeV, in Proceedings of the Conference on Nuclear Cross Sections and Technology, Washington, USA, 1975, edited by Roald A. Schrack, Charles D. Bowman, (USA: Department of Commerce, National Bureau of Standards, Institute for Basic Standards, Center for Radiation Research, 1975), Vol. 2, p. 916 https://nvlpubs.nist.gov/nistpubs/Legacy/SP/nbsspecialpublication425v2.pdf
-
[66]
T. Yamamoto, Y. Hino, S. Itagaki et al., J. Nucl. Sci. Technol. 15(11), 11 (1978)
-
[67]
P. Oblozinsky, S. Hlavac, G. Maino et al., Il Nuovo Cimento A 105, 965 (1992)
-
[68]
L.C. Mihailescu, C. Borcea, A.J. Koning et al., Nucl. Phys. A 786(1-4), 1 (2007)
-
[69]
M. A. Bostrom, I. L. Morgan, J. T. Prud'homme et al., Interaction of fast neutrons in iron, lead, oxygen and hydrogen, Wright Air Devel. Centre Reports, Rep. No. 50-31, (Texas Nuclear Corp., Austin, TX, USA, 1959)
-
[70]
B. Joensson, K. Nyberg, and I. Bergquist, Ark. Foer Fys. 39, 295 (1969)
-
[71]
B. I. Sukhanov and N. P. Tkach, Sov. J. Nucl. Phys. 11, 17 (1970)
-
[72]
A. P. Degtyarev, V. V. Kravtsov, and A. Prokopets, Gamma-rays connected with the nonelastic processes of the deuterium-tritium neutrons on the nuclei Na, Fe, USSR report to the I.N.D.C., Rep. No. INDC(CCP)-118, (Kyivsky Natsionalny Univ. "Taras Shevchenko", Kyiv, Ukraine, 1977)
-
[73]
S. Xiamin, S. Ronglin, X. Jinqiang et al., Measurements of the induced gamma ray cross-sections by 14.2 MeV neutrons with Fe, Ni and Cu, in Proceedings of Conference on Nuclear Data for Science and Technology, held in Antwerpen, Belgium, 6-10 September 1982, edited by K. H. Böckhoff, (Holland: D. Reidel Publishing Company, 1982), p. 373; https://doi.org/10.1007/978-94-009-7099-1
-
[74]
B. Al-Shalabi and A. J. Cox, Nucl. Instrum. Methods Phys. Res. 205(3), 495 (1983)
-
[75]
S. Hlavac and P. Oblozinsky, Gamma-ray production cross sections and gamma-ray multiplicities from Fe and Ni bombarded with 14.6 MeV neutrons, CSR report to the INDC, Rep. No. INDC(CSR)-5 INT(83)-7, (IAEA NDS, Vienna, Austria, 1983) https://www-nds.iaea.org/publications/indc/indc-csr-0005.pdf
-
[76]
X. Jinqiang, C. Zhong, W. Yongshun et al., Chin. J. of Nucl. Phys. 10(3), 284 (1988)
-
[77]
H. Sakane, Y. Kasugai, F. Maekawa et al., Measurement of discrete gamma-ray production cross sections for interaction of 14-MeV neutrons with Mg, Al, Si, Ti, Fe, Ni, Cu, Nb, Mo and Ta, in Proceedings of the 1998 Symposium on Nuclear Data, held in Tokai, Japan, November 19-20 1998, edited by Tadashi Yoshida and Tokio Fukahori, (Japan: Japan Atomic Energy Research Institute, 1999), p. 216 https://inis.iaea.org/records/6t2mv-k9p62
-
[78]
A. Negret, C. Borcea, Ph. Dessagne et al., Phys. Rev. C 90, 034602 (2014)
-
[79]
D. L. Broder, A. F. Gamaliy, A. I. Lashuk et al., The
reaction on Fluorine, Iron, Cobalt, Nickel and Tantalum, in Proceedings of the Second International Conference on Nuclear Data for Reactors, edited by IAEA editorial staff, (Austria: IAEA, 1970), Vol. 2, p. 295 https://www-nds.iaea.org/publications/proceedings/sti-pub-259-Vol2.pdf\begin{document}$(n, n'\gamma)$\end{document} -
[80]
G. T. Western, R. C. Baird, F. L. Gibbons et al., The interactions of 14.6-MeV neutrons in iron, Lithium-7, and carbon, Techn. Report, Rep. No.64-140, (General Dynamics, Fort Worth, USA 1965) https://apps.dtic.mil/sti/html/tr/AD0614451/index.html
-
[81]
M. Mitsuda, T. Kondo, I. Murata et al., J. Nucl. Sci. Technol. 39(2), 437 (2002)
-
[82]
R. Antalik, S. Hlavac, and P. Oblozinsky, in Neutron induced reactions, Vol. 6. (VEDA, Publishing House of the Slovak Academy of Sciences, 1980), p. 277
-
[83]
R. O. Nelson, N. Fotiades, M. Devlin et al., AIP Conf. Proc. 769(1), 838 (2005)
-
[84]
S. P. Simakov, A. Pavlik, H. Vonach et al., Status of experimental and evaluated discrete
-rays production at En=14.5 MeV, final report of research contract 7809/RB, performed under the CRP on measurement, Calculation and Evaluation of Photon Production Data, INDC(CCP)- 413, (IAEA NDS, Vienna, 1998) https://inis.iaea.org/records/c44gw-yfn27\begin{document}$\gamma$\end{document} -
[85]
E. P. Bogolyubov, A. V. Gavryuchenkov, M. D. Karetnikov et al., Neutron generators and DAQ system for tagged neuron technology, in Proceedings of the XXVI International Symposium on Nuclear Electronics & Computing (NEC'2017), held in Becici, Budva, Montenegro, September 25 - 29, 2017 edited by Vladimir Korenkov and Andrey Nechaevskiy, (Russia: JINR, 2017) p. 176 https://ceur-ws.org/Vol-2023/176-181-paper-27.pdf
-
[86]
R. Capote, M. Herman, P. Oblozinsky et al., Nucl. Data Sheets 110(12), 3107 (2009)
-
[87]
Evaluated Nuclear Structure Data Files (ENSDF) database, retrieved 15th August 2025 https://www.nndc.bnl.gov/ensdf/
-
[88]
S. Agostinelli, J. Allison, K. Amako et al., Nucl. Instrum. Methods Phys. Res. A 506(3), 250 (2003)
-
[89]
J. Allison, K. Amako, J. Apostolakis et al., Nucl. Instrum. Methods Phys. Res. A 835, 186 (2016)
-
[90]
Richard M. Lindstrom, Richard B. Firestone, and R. Paviotti-Corcuera, Development of a Database for Prompt
-ray Neutron Activation Analysis, Summary Report of the Third Research Coordination Meeting (INDC(NDS)-443), (IAEA NDS, Vienna, Austria, 2003) https://www-nds.iaea.org/pgaa/Annex1/INDC_NDS_443.pdf\begin{document}$\gamma$\end{document} -
[91]
A. Koning, S. Hilaire, and S. Goriely, Eur. Phys. J. A 59, 131 (2023)
-
[92]
D. A. Brown, M. B. Chadwick, R. Capote et al., Nucl. Data Sheets 148, 1 (2018)
-
[93]
O. Iwamoto, N. Iwamoto, S. Kunieda et al., J. Nucl. Sci. Technol. 60(1), 1 (2023)
-
[94]
A. Negret, M. Sin, C. Borcea et al., Phys. Rev. C 96, 024620 (2017)
-
[95]
C. R Brune, Nucl. Intrum. Meth. Phys. Res. A 493, 106 (2002)