- [1]
W. Li, L. Liu, Z. Niuet al., Phys. Rev. C109, 044616 (2024)
- [2]
K. Blaum and M. J. G. Borge, Eur. Phys. A60, 94 (2024)
- [3]
S. M. Qaim, Nucl. Med. Biol.44, 31 (2017)
- [4]
L. He, J. Luo, and L. Jiang, Chin. Phys. C47, 034001 (2023)
- [5]
J. Luo, L. Jiang, J. Lianget al., Chin. Phys. C46, 044001 (2022)
- [6]
IAEA experimental nuclear reaction data (EXFOR) Brookhaven National Laboratory, 2022. National nuclear data center https://www-nds.iaea.org/exfor/exfor.htm
- [7]
A. Gandhi, A. Sharma, R. Pachuauet al., Eur. Phys. J. Plus136, 819 (2021)
- [8]
J. Luo, L. Jiang, and J. Liang, Eur. Phys. A60, 2 (2024)
- [9]
J. Luo, L. Jiang, F. Tuoet al., Phys. Scr.99, 045034 (2024)
- [10]
J. Luo, F. Tuo, and X. Kong, Phys. Rev. C79, 057603 (2009)
- [11]
Akash Hinguet al., Chin. Phys. C48, 024001 (2024)
- [12]
Vibhuti Vashiet al., Phys. Rev. C105, 044613 (2022)
- [13]
M. Bhike, E. Rubino, M. E. Goodenet al., Phys. Rev. C92, 014624 (2015)
- [14]
E. Kondaiah, N. Ranakumar, and R. W. Fink, Nucl. Phys. A120, 337 (1968)
- [15]
J. Zeng, C. Zhu, Y. Gonget al., Nucl. Phys. A1030, 122569 (2023)
- [16]
S. Chatterjee and A. Chatterjee, Nucl. Phys. A125, 593 (1969)
- [17]
W.-d. Lu and R. W. Fink, Phys. Rev. C4, 1173 (1971)
- [18]
V. M. Bychkov, V. N. Manokhin, A. B. Pashchenkoet al., INDC(CCP)-146, NDS, IAEA, 1980
- [19]
A. Yu. Konobeyev and Y. A. Korovin, Nuovo Cimento A112, 1001 (1999)
- [20]
A. Hingu, S. Parashari, S. K. Singhet al., Radiat. Phys. Chem.188, 109634 (2021)
- [21]
G. Y. Mohamed, M. Al-abyad, and A. Azzam, Appl. Radiat. Isot.187, 110341 (2022)
- [22]
F. I. Habbani and Khalda T. Osman, Appl. Radia. Isoto.54, 283 (2001)
- [23]
J. Luo, F. Tuo, F. Zhouet al., Nucl. Instrum. Meth. B266, 4862 (2008)
- [24]
B. Singh, Nucl. Data Sheets135, 193 (2016)
- [25]
A. J. Koning, S. Hilaire, and M. Duijvestijn, TALYS-1.96,A nuclear reaction program, NRG-1755 ZG Petten, Netherlands, 2021 http://www.talys.eu
- [26]
D. A. Brownet al., Nucl. Data Sheets148, 1 (2018)
- [27]
A. I. Blokhinet al., Vopr. At. Nauki Tekh. Ser. Yad. Konstanty2, 62 (2016)
- [28]
A. J. M. Plompenet al., Eur. Phys. A56, 181 (2020)
- [29]
O. Iwamotoet al., J. Nucl. Sci. Technol.60, 1 (2023)
- [30]
A. J. Koning, D. Rochman, J. -Ch. Subletet al., Nucl. Data Sheets155, 1 (2019)
- [31]
Evaluated Nuclear Structure Data File (ENSDF), (Last updated 2024-11-07) https://www.nndc.bnl.gov/nudat3/
- [32]
J. Luo, L. He, L. Zhouet al., Eur. Phys. A61, 30 (2025)
- [33]
V. E. Lewis and K. J. Zieba, Nucl. Instrum. Meth.174, 141 (1980)
- [34]
J. Luo, L. Du, J. Zhaoet al., Nucl. Instrum. Meth. B298, 61 (2013)
- [35]
GammaVision®-32,Gamma-Ray Spectrum Analysis and MCA Emulator, Software User’s Manual, Software Version 5.3.
- [36]
J. Luo, J. Liang, L. Jianget al., Eur. Phys. A58, 142 (2022)
- [37]
J. Luo, J. Liang, L. Jianget al., Nucl. Sci. Tech.34, 4 (2023)
- [38]
J. H. Hubbell and S. M. Seltzer,Tables of x-ray mass attenuation coefficients and mass energy-absorption coefficients from 1 keV to 20 MeV for elementsZ= 1 to 92 and 48 additional substances of dosimetric interest(1995) http://physics.nist.gov/PhysRefData/XrayMassCoef/tab3.html
- [39]
F. Zhou, Y. Zhang, J. Luoet al., HEP & NP31, 487 (2007) (in Chinese)
- [40]
N. Otuka, B. Lalremruata, M. U. Khandakeret al., Radiat. Phys. Chem.140, 502 (2017)
- [41]
M. Choudharyet al., Chin. Phys. C48, 094104 (2024)
- [42]
J. Luo and L. Jiang, Eur. Phys. A55, 27 (2019)
- [43]
IRDFF-II (International Reactor Dosimetry and Fusion File), 2020 https://www-nds.iaea.org/IRDFF/
- [44]
S. Hoblit, Y. -S. Cho, M. Hermanet al., Nucl. Data Sheets112, 3075 (2011)
- [45]
G. Schnabel,Fitting and analysis technique for inconsistent nuclear data, 2017 − International Conference on Mathematics & Computational Methods Applied to Nuclear Science & Engineering, Jeju, Korea, April 16−20, 2017, on USB (2017)
- [46]
A. Koning, S. Hilaire, and S. Goriely, Eur. Phys. A59, 131 (2023)
- [47]
S. Sudár and S. M. Qaim, Nucl. Phys. A979, 113 (2018)
- [48]
RIPL-2 Reference Input Parameter Library, IAEA, A-1400Vienna, IAEA-NDS http://www-nds.iaea.org/RIPL-2/