^Thoennessen, M. Reaching the limits of nuclear stability. Reports on Progress in Physics (IOP Publishing). 2004-06-09, 67 (7): 1187–1232. ISSN 0034-4885. doi:10.1088/0034-4885/67/7/r04.
^Grzywacz, R.; Karny, M.; Rykaczewski, K. P.; Batchelder, J. C.; Bingham, C. R.; Fong, D.; Gross, C. J.; Krolas, W.; Mazzocchi, C.; Piechaczek, A.; Tantawy, M. N.; Winger, J. A.; Zganjar, E. F. Discovery of the new proton emitter 144Tm. The European Physical Journal A. 1 September 2005, 25 (1): 145–147. ISSN 1434-601X. doi:10.1140/epjad/i2005-06-210-2.
^ 11.011.111.2Heßberger, F. P.; Hofmann, S.; Ackermann, D.; et al. Alpha-gamma decay studies of 255Rf, 251No and 247Fm. The European Physical Journal A - Hadrons and Nuclei. 1 December 2006, 30 (3): 561–569. ISSN 1434-601X. doi:10.1140/epja/i2006-10137-2.
^Kessaci, K.; Gall, B. J. P.; Dorvaux, O.; et al. Evidence of high-K isomerism in 256 102No 154. Physical Review C. 11 October 2021, 104 (4): 044609. doi:10.1103/PhysRevC.104.044609.
^ 16.016.1Andreyev, A. N.; Antalic, S.; Huyse, M.; Duppen, P. Van; Ackermann, D.; Bianco, L.; Cullen, D. M.; Darby, I. G.; Franchoo, S.; Heinz, S.; Heßberger, F. P.; Hofmann, S.; Kojouharov, I.; Kindler, B.; Leppänen, A.-P.; Lommel, B.; Mann, R.; Münzenberg, G.; Pakarinen, J.; Page, R. D.; Ressler, J. J.; Saro, S.; Streicher, B.; Sulignano, B.; Thomson, J.; Wyss, R. α decay of the new isotopes 193,194Rn. Physical Review C. 6 December 2006, 74 (6). ISSN 0556-2813. doi:10.1103/PhysRevC.74.064303.
^Kettunen, H.; Enqvist, T.; Grahn, T.; Greenlees, P.T.; Jones, P.; Julin, R.; Juutinen, S.; Keenan, A.; Kuusiniemi, P.; Leino, M.; Leppänen, A.-P.; Nieminen, P.; Pakarinen, J.; Rahkila, P.; Uusitalo, J. Alpha-decay studies of the new isotopes 191At and 193At(PDF). The European Physical Journal A - Hadrons and Nuclei. 1 August 2003, 17 (4): 537–558 [23 June 2023]. ISSN 1434-601X. doi:10.1140/epja/i2002-10162-1(英語).
^Utyonkov, V. K.; Brewer, N. T.; Oganessian, Yu. Ts.; Rykaczewski, K. P.; et al. Experiments on the synthesis of superheavy nuclei 284Fl and 285Fl in the 239,240Pu + 48Ca reactions. Physical Review C. 15 September 2015, 92 (3): 034609. Bibcode:2015PhRvC..92c4609U. doi:10.1103/PhysRevC.92.034609.
^Oganessian, Yu. Ts.; et al. Experimental studies of the 249Bk + 48Ca reaction including decay properties and excitation function for isotopes of element 117, and discovery of the new isotope 277Mt. Physical Review C. 2013, 87 (5): 054621. Bibcode:2013PhRvC..87e4621O. doi:10.1103/PhysRevC.87.054621.
^ 25.025.1Huang, T.; Seweryniak, D.; Back, B. B.; et al. Discovery of the new isotope 251Lr: Impact of the hexacontetrapole deformation on single-proton orbital energies near the Z = 100 deformed shell gap. Physical Review C. 2022, 106 (L061301). S2CID 254300224. doi:10.1103/PhysRevC.106.L061301.
^Utyonkov, V. K.; Brewer, N. T.; Oganessian, Yu. Ts.; Rykaczewski, K. P.; et al. Neutron-deficient superheavy nuclei obtained in the 240Pu+48Ca reaction. Physical Review C. 30 January 2018, 97 (14320): 1–10. Bibcode:2018PhRvC..97a4320U. doi:10.1103/PhysRevC.97.014320.
^ 29.029.1Oganessian, Yu. Ts.; Utyonkov, V. K.; Ibadullayev, D.; et al. Investigation of 48Ca-induced reactions with 242Pu and 238U targets at the JINR Superheavy Element Factory. Physical Review C. 2022, 106 (024612). doi:10.1103/PhysRevC.106.024612.
^Bhattacharya, Soumik; Tripathi, Vandana; Tabor, S. L.; Volya, A.; Bender, P. C.; Benetti, C.; Carpenter, M. P.; Carroll, J. J.; Chester, A.; Chiara, C. J.; Childers, K.; Clark, B. R.; Crider, B. P.; Harke, J. T.; Jain, R.; Liddick, S. N.; Lubna, R. S.; Luitel, S.; Longfellow, B.; Mogannam, M. J.; Ogunbeku, T. H.; Perello, J.; Richard, A. L.; Rubino, E.; Saha, S.; Shehu, O. A.; Unz, R.; Xiao, Y.; Zhu, Yiyi. β− decay of neutron-rich 45Cl located at the magic number N=28. Physical Review C (American Physical Society (APS)). 2023-08-18, 108 (2). ISSN 2469-9985. doi:10.1103/physrevc.108.024312.
^Cubiss, J. G.; Andreyev, A. N.; Barzakh, A. E.; Andel, B.; Antalic, S.; Cocolios, T. E.; Goodacre, T. Day; Fedorov, D. V.; Fedosseev, V. N.; Ferrer, R.; Fink, D. A.; Gaffney, L. P.; Ghys, L.; Huyse, M.; Kalaninová, Z.; Köster, U.; Marsh, B. A.; Molkanov, P. L.; Rossel, R. E.; Rothe, S.; Seliverstov, M. D.; Sels, S.; Sjödin, A. M.; Stryjczyk, M.; L.Truesdale, V.; Van Beveren, C.; Van Duppen, P.; Wilson, G. L. Fine structure in the α decay of 218At. Physical Review C (American Physical Society (APS)). 2019-06-14, 99 (6). ISSN 2469-9985. doi:10.1103/physrevc.99.064317.
^Hoffman, D. C.; Lee, D. M.; Gregorich, K. E.; et al. Spontaneous fission properties of 2.9-s 256No. Physical Review C. 1 February 1990, 41 (2): 631–639. doi:10.1103/PhysRevC.41.631.
^Asai, M.; Tsukada, K.; Sakama, M.; et al. Experimental Identification of Spin-Parities and Single-Particle Configurations in 257No and Its α-Decay Daughter 253Fm. Physical Review Letters. 2 September 2005, 95 (10): 102502. doi:10.1103/PhysRevLett.95.102502.
^Fisichella, M.; Musumarra, A.; Farinon, F.; Nociforo, C.; Del Zoppo, A.; Figuera, P.; La Cognata, M.; Pellegriti, M. G.; Scuderi, V.; Torresi, D.; Strano, E. Determination of the half-life of 213Fr with high precision. Physical Review C (American Physical Society (APS)). 2013-07-24, 88 (1). ISSN 0556-2813. doi:10.1103/physrevc.88.011303.
^ 37.037.1Khuyagbaatar, J.; Heßberger, F. P.; Hofmann, S.; Ackermann, D.; Burkhard, H. G.; Heinz, S.; Kindler, B.; Kojouharov, I.; Lommel, B.; Mann, R.; Maurer, J.; Nishio, K. α decay of 243Fm143 and 245Fm145, and of their daughter nuclei. Physical Review C (American Physical Society (APS)). 2020-10-12, 102 (4). ISSN 2469-9985. doi:10.1103/physrevc.102.044312.
^ 38.038.1Asai, M.; Tsukada, K.; Ichikawa, S.; Sakama, M.; Haba, H.; Nishinaka, I.; Nagame, Y.; Goto, S.; Kojima, Y.; Oura, Y.; Shibata, M. α decay of 238Cm and the new isotope 237Cm. Physical Review C (American Physical Society (APS)). 2006-06-20, 73 (6). ISSN 0556-2813. doi:10.1103/physrevc.73.067301.
^Chiera, Nadine M.; Dressler, Rugard; Sprung, Peter; Talip, Zeynep; Schumann, Dorothea. Determination of the half-life of gadolinium-148. Applied Radiation and Isotopes (Elsevier BV). 2023, 194: 110708. ISSN 0969-8043. doi:10.1016/j.apradiso.2023.110708.
^Chiera, Nadine Mariel; Dressler, Rugard; Sprung, Peter; Talip, Zeynep; Schumann, Dorothea. High precision half-life measurement of the extinct radio-lanthanide Dysprosium-154. Scientific Reports (Springer Science and Business Media LLC). 2022-05-28, 12 (1). ISSN 2045-2322. doi:10.1038/s41598-022-12684-6.
^Albert, J. B.; Auger, M.; Auty, D. J.; Barbeau, P. S.; Beauchamp, E.; Beck, D.; Belov, V.; Benitez-Medina, C.; Bonatt, J.; Breidenbach, M.; Brunner, T.; Burenkov, A.; Cao, G. F.; Chambers, C.; Chaves, J.; Cleveland, B.; Cook, S.; Craycraft, A.; Daniels, T.; Danilov, M.; Daugherty, S. J.; Davis, C. G.; Davis, J.; Devoe, R.; Delaquis, S.; Dobi, A.; Dolgolenko, A.; Dolinski, M. J.; Dunford, M.; et al. Improved measurement of the 2νββ half-life of 136Xe with the EXO-200 detector. Physical Review C. 2014, 89. Bibcode:2014PhRvC..89a5502A. arXiv:1306.6106. doi:10.1103/PhysRevC.89.015502.