- 
								[1]
								D. Lunney, J. M. Pearson, and C. Thibault, Reviews of Modern Physics 75, 1021 (2003) 
- 
								[2]
								W. Huang, M. Wang, F. Kondev et al., Chin. Phys. C 45, 030002 (2021) 
- 
								[3]
								M. Mumpower, R. Surman, G. McLaughlin et al., Progress in Particle and Nuclear Physics 86, 86 (2016) 
- 
								[4]
								E. M. Burbidge, G. R. Burbidge, W. A. Fowler et al., Reviews of Modern Physics 29, 547 (1957) 
- 
								[5]
								D. Martin, A. Arcones, W. Nazarewicz et al., Phys.l Rev. Lett. 116, 121101 (2016) 
- 
								[6]
								P. Möller, A. Sierk, T. Ichikawa et al., Atomic Data and Nuclear Data Tables 109- 109-110, 1 (2016) 
- 
								[7]
								S. Goriely and N. Chamel, Phys. Rev. Lett. 102, 152503 (2009) 
- 
								[8]
								S. Goriely and N. Chamel, Phys. Rev. C 88, 024308 (2013) 
- 
								[9]
								P. W. Zhao, Z. P. Li, J. M. Yao et al., Phys. Rev. C 82, 054319 (2010) 
- 
								[10]
								N. Wang, M. Liu, X. Wu et al., Phys. Lett. B 734, 215 (2014) 
- 
								[11]
								Z. Niu and H. Liang, Phys. Lett. B 778, 48 (2018) 
- 
								[12]
								R. Pederson, B. Kalita, and K. Burke, Nature Reviews Physics 4, 357 (2022) 
- 
								[13]
								H. J. Kulik, T. Hammerschmidt, J. Schmidt et al., Electronic Structure 4, 023004 (2022) 
- 
								[14]
								A. Boehnlein, M. Diefenthaler, N. Sato, M. Schram et al., Reviews of Modern Physics 94, 031003 (2022) 
- 
								[15]
								Z. M. Niu, H. Z. Liang, B. H. Sun et al., Phys. Rev. C 99, 064307 (2019) 
- 
								[16]
								F. Minato, Z. Niu, and H. Liang, Phys. Rev. C 106, 024306 (2022) 
- 
								[17]
								C. Ma, Z. Li, Z. M. Niu et al., Phys. Rev. C 100, 024330 (2019) 
- 
								[18]
								D. Wu, C. L. Bai, H. Sagawa et al., Phys. Rev. C 102, 054323 (2020) 
- 
								[19]
								R.-D. Lasseri, D. Regnier, J.-P. Ebran et al., Phys. Rev. Lett. 124, 162502 (2020) 
- 
								[20]
								R. Utama and J. Piekarewicz, Phys. Rev. C 96, 044308 (2017) 
- 
								[21]
								E. Yüksel, D. Soydaner, and H. Bahtiyar, International Journal of Modern Physics E: Nuclear Physics 30, 2150017 (2021) 
- 
								[22]
								Z. M. Niu and H. Z. Liang, Phys. Rev. C 106, L021303 (2022) 
- 
								[23]
								J. W. CLARK and H. LI, International Journal of Modern Physics B 20, 5015 (2006) 
- 
								[24]
								M. Shelley and A. Pastore, A new mass model for nuclear astrophysics: Crossing 200 keV accuracy, Universe 7, 131 (2021) 
- 
								[25]
								Z.-P. Gao, Y.-J. Wang, H.-L. Lü et al., Machine learning the nuclear mass, Nuclear Science and Techniques 32 , https://doi.org/10.1007/s41365-021-00956-1 (2021). 
- 
								[26]
								Z. M. Niu, Z. L. Zhu, Y. F. Niu et al., Phys. Rev. C 88, 024325 (2013) 
- 
								[27]
								X. Wu, L. Guo, and P. Zhao, Phys. Lett. B 819, 136387 (2021) 
- 
								[28]
								Y. Liu, C. Su, J. Liu et al., Phys. Rev. C 104, 014315 (2021) 
- 
								[29]
								D. Wu, C. L. Bai, H. Sagawa et al, Phys. Rev. C 104, 054303 (2021) 
- 
								[30]
								TensorFlow, Module: tf.keras.activations, https://www.tensorflow.org/api_docs/python/tf/keras/activations (2023), accessed: 2023-06-01. 
- 
								[31]
								M. W. Kirson, Nucl. Phys. A 798, 29 (2008) 
- 
								[32]
								TensorFlow, tf.keras.optimizers.adam, https://www.tensorflow.org/api_docs/python/tf/keras/optimizers/Adam (2023), accessed: 2023-06-01. 
- 
								[33]
								TensorFlow, Module: tf.keras.initializers, https://www.tensorflow.org/api_docs/python/tf/keras/initializers (2023), accessed: 2023-06-01. 
- 
								[34]
								TensorFlow, Module: tf.keras.regularizers, https://www.tensorflow.org/api_docs/python/tf/keras/regularizers (2023), accessed: 2023-06-01.