-
[1]
N. Abas, A. Kalair, and N. Khan, Futures 69, 1 (2015)
-
[2]
S. Koohi-Fayegh and M. A. Rosen, Eur. J. Sustain. Dev. Res. 4(4), em0138 (2020)
-
[3]
B. W. Brook and C. J. A. Bradshaw, Conserv. Biol. 29, 702 (2015)
-
[4]
IAEA Power Reactor Information System (PRIS) https://pris.iaea.org/signin/
-
[5]
ITER Organization https://www.iter.org/proj/inafewlines
-
[6]
Z. G. Ge and Y. J. Chen, At. Energ. Sci. Technol. 53, 1742 (2019)
-
[7]
A. J. Koning and D. Rochman, Nucl. Data Sheets 113(12), 2841 (2012)
-
[8]
Y.-B. Nie et al., Fusion Eng. Des. 105, 8 (2016)
-
[9]
Y.-B. Nie, J. Ren, X. C. Ruan et al., Fusion Eng. Des. 145, 40 (2019)
-
[10]
Q. Zhao, Y.-B. Nie, Y.-Y. Ding et al., Nucl. Sci. Tech. 34, 182 (2023)
-
[11]
L. Rubyl and R. B. Crawford, Nucl. Instrum. Meth. 24, 413 (1963)
-
[12]
L. B. Fontana et al., Appl. Radiat. Isot. 225, 111990 (2025)
-
[13]
D. Neudecker, O. Cabellos, A. R. Clark et al., Ann. Nucl. Energy 159, 108345 (2021)
-
[14]
C. Ichihara, I. Kimura, J. Yamamoto et al., J. Nucl. Sci. Technol. 44(1), 29 (2007)
-
[15]
S. C. Frankle, Criticality Benchmark Results Using Various MCNP Data Libraries, Report (1999) https://www.osti.gov/biblio/9446
-
[16]
A. D. Carlson, Metrologia 48, S328 (2011)
-
[17]
W. Mannhart, Status of the Cf-252 fission neutron spectrum evaluation with regard to recent experiments, in Consultants' Meeting on Physics of Neutron Emission in Fission, p. 305–336 (1989) https://inis.iaea.org/records/hqdbn-j7x86
-
[18]
J. W. Boldeman, D. Culley, and R. J. Cawley, in Proceedings of the International Conference on Neutron Physics and Nuclear Data for Reactors and Other Applied Purposes (1978), p. 916–921 https://inis.iaea.org/records/p91an-t9g37
-
[19]
J. W. Meadows, Phys. Rev. 157(4), 1076 (1967)
-
[20]
A. B. Smith, P. R. Fields, and J. H. Roberts, Phys. Rev. 108(2), 411 (1957)
-
[21]
N. V. Kornilov and S. M. Grimes, Nucl. Sci. Eng. 194(10), 927 (2020)
-
[22]
S. P. Simakov, A. A. Androsenko, P. A. Androsenko et al., Fusion Technology 1992 1993, 1489 (1993)
-
[23]
D. A. Brown, M. B. Chadwick, R. Capote et al., Nucl. Data Sheets 148, 1 (2018)
-
[24]
Z. Ge, R. Xu, H. Wu et al., EPJ Web Conf. 239, 09001 (2020)
-
[25]
O. Cabellos, F. Alvarez-Velarde, M. Angelone et al., EPJ Web Conf. 146, 06004 (2017)
-
[26]
O. Iwamoto, N. Iwamoto, S. Kunieda et al., J. Nucl. Sci. Technol. 60(1), 1 (2023)
-
[27]
National Health Commission of China https://openstd.samr.gov.cn/bzgk/gb/newGbInfo?hcno=61888EEB7C3060FDB7312BDC8B0BC29B
-
[28]
A. Tomanin, J. Paepen, P. Schillebeeckx et al., Nucl. Instrum. Meth. A 756, 45 (2014)
-
[29]
F. Ferrulli, M. Labalme, and M. Silari, Nucl. Instrum. Meth. A 1029, 166460 (2022)
-
[30]
A. Giaz, N. Blasi, C. Boiano et al., Nucl. Instrum. Meth. A 825, 51 (2016)
-
[31]
Rita, Appiah. MCNP TM –A General Monte Carlo N–Particle Transport Code, LA-13709-M(2000) https://www.academia.edu/34529307/MCNP_TM_A_General_Monte_Carlo_N_Particle_Transport_Code
-
[32]
G. R. Shen, Neutron Time-of-Flight Method and Its Applications (Beijing: Atomic Energy Press, 2007)
-
[33]
D. Cester, M. Lunardon, G. Nebbia et al., Nucl. Instrum. Meth. A 748, 33 (2014)
-
[34]
UM5960 Compass User Manual https://www.caen.it/download/?filter=compass
-
[35]
S. Y. Xu and B. J. Liu, Nucl. Tech, 7: 597 (2007) (in Chinese) http://dianda.cqvip.com/Qikan/Article/Detail?id=24912193
-
[36]
A. J. Grievson, Time-of-flight spectrometry of the spontaneous fission neutron emission of Cm-244 and Cf-252 using EJ-309 liquid scintillators, Ph.D. Thesis (Lancaster University, 2020)