相关期刊:《Communications in Theoretical Physics》《Chinese Physics Letters》《Annual Report of China Institute of Atomic Energy》《Science China(Physics,Mechanics & Astronomy)》更多>>
Supported by the National Natural Science Foundation of China(12222511);the National Key R&D Program of China(2023YFA1606701);the Strategic Priority Research Program of the Chinese Academy of Sciences(XDB34000000)。
The neutron shell gap at N=152 has been experimentally confirmed through high-precision mass measurements on nobelium(Z=102)and lawrencium(Z=103)isotopes.The experimental measurements onα-decay properties suggest tha...
Supported by the National Natural Science Foundation of China(Grant Nos.12205076 and 12047504);the China Postdoctoral Science Foundation(Grant No.2020M670012);the Launching Fund of Henan University of Technology(Grant No.2021BS047).
By using potential energy surface(PES)calculations in the three-dimensional space(β_(2),γ,β_(4))within the framework of the macroscopic-microscopic model,the fission trajectory and fission barrier for Z=118(Og),119...
supported by the Guangdong Major Project of Basic and Applied Basic Research under Grant No. 2021B0301030006;the computational resources from SYSU and the National Supercomputer Center in Guangzhou。
Information on the decay process of nuclides in the superheavy region is critical in investigating new elements beyond oganesson and the island of stability.This paper presents the application of a random forest algor...
supported by the Strategic Priority Research Program(B)of the Chinese Academy of Sciences(XDB18000000);the National Natural Science Foundation of China(41802024,41973008,42072334 and 41322021);funded by the National Science Foundation(EAR-2021207)。
The global deposition of superheavy pyrite(pyrite isotopically heavier than coeval seawater sulfate in the Neoproterozoic Era and particularly in the Cryogenian Period)defies explanation using the canonical marine sul...
The existence of several TeV superheavy particles (SHPs) is predicted by theories beyond the Standard Model. Particles with a mass exceeding the energy in the center of mass in the collision of protons with protons ca...
This investigation aims to find an appropriate dinuclear system for the formation of^(296)119 superheavy compound nucleus.By studying the driving potential and measuring the capture cross section of the reactions,the ...
financial support from the UGC-DAE Consortium for Scientific Research,F.No.UGC-DAE-CSR-KC/CRS/19/NP09/0920;the INSPIRE-fellowship(grant no.DST/INSPIRE/03/2015/000199).
The capture and fission analysis of heavy ion induced fusion reactions leading to the formation of Z=107-111 superheavy nuclei has been carried out.Attempts have been made to analyze the synthesis traits,such as excit...
supported by the National Natural Science Foundation of China(Grants No.U1832120 and No.11675265);the Natural Science Foundation for Outstanding Young Scholars of Hebei Province of China(Grant No.A2018210146);the Continuous Basic Scientific Research Project(Grant No.WDJC-2019-13).
The two-neutron separation energies(S2n)andα-decay energies(Qα)of the Z=114 isotopes are calculated by the deformed Skyrme-Hartree-Fock-Bogoliubov(SHFB)approach with the SLy5,T22,T32 and T43 interactions.It is found...
Supported by the National Natural Science Foundation of China(11605296);the Natural Science Foundation of Guangdong Province,China(2016A030310208);Fundamental Research Funds for the Central Universities(18lgpy87)
The multinucleon transfer(MNT)process has been proposed as a promising approach to produce neutronrich superheavy nuclei(SHN).MNT reactions based on the radioactive targets 249Cf,254Es,and 257Fm are investigated withi...
Supported by the Turkish Science and Research Council(TüB?TAK)with Grant Number 118R028
Spontaneous fission(SF) with a new formula based on a liquid drop model is proposed and used in the calculation of the SF half-lives of heavy and superheavy nuclei(Z = 90–120). The predicted half-lives are in agreeme...