New isotope Ds276 and its decay products

[1]  P. Möller The most important theoretical developments leading to the current understanding of heavy-element stability , 2023, The European Physical Journal A.

[2]  A. Goel,et al.  Atlas of nuclear isomers—Second edition , 2022, Atomic Data and Nuclear Data Tables.

[3]  Y. Tsyganov,et al.  DGFRS-2—A gas-filled recoil separator for the Dubna Super Heavy Element Factory , 2022, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment.

[4]  F. Kondev,et al.  The NUBASE2020 evaluation of nuclear physics properties , 2021, Chinese Physics C.

[5]  M. Kowal,et al.  Properties of heaviest nuclei with 98≤Z≤126 and 134≤N≤192 , 2020, 2010.10018.

[6]  V. K. Utyonkov,et al.  Superheavy nuclei from 48 Ca-induced reactions , 2015 .

[7]  H. Sagawa,et al.  Nuclear ground-state masses and deformations: FRDM(2012) , 2015, 1508.06294.

[8]  W. Nazarewicz,et al.  Recoil-α-fission and recoil-α–α-fission events observed in the reaction $^{48}Ca + ^{243}Am$ , 2015, 1502.03030.

[9]  S. L. Nelson,et al.  The reaction 48Ca + 248Cm → 296116* studied at the GSI-SHIP , 2007, The European Physical Journal A.

[10]  K. Schmidt A new test for random events of an exponential distribution , 2000 .

[11]  W. Myers,et al.  Nuclear properties according to the Thomas-Fermi model☆ , 1996 .

[12]  F. Kondev,et al.  The AME 2020 atomic mass evaluation (II). Tables, graphs and references , 2021, Chinese Physics C.

[13]  R. Dressler,et al.  The reaction 48Ca + 238U → 286112* studied at the GSI-SHIP , 2007 .