National Natural Science Foundation of China(11405099,11575291,12065003);Scientific and Technological Innovation Programs of Higher Education Institutions(STIP)in Shanxi of China(2019L0743);Science Foundation for General in Shanxi of China(201901D111317);This work is also supported by the Open Project of Guangxi Key Laboratory of Nuclear Physics and Nuclear Technology(NLK2020-04);is also a part of IAEA Coordinated Research Projects(CRPs)on Recommended Input Parameter Library(RIPL)for Fission Cross Section Calculations(20464)。
The elastic-scattering angular distributions and total reaction cross sections of ^(9,10,11,13,14)C projectiles were predicted using the obtained ^(12)C and ^(9)Be global optical model potentials,respectively.The pred...
Supported by China National Natural Science Foundation(11405099,11575291,12065003);by Scientific and Technological Innovation Programs of Higher Education Institutions(STIP)in Shanxi of China(2019L0743);by Science Foundation for General in Shanxi of China(201901D111317);This work is also a part of IAEA Coordinated Research Projects(CRPs)on Recommended Input Parameter Library(RIPL)for Fission Cross Section Calculations(20464)。
We construct a new global optical model potential to describe the elastic scattering of 12C.The experimental data of elastic-scattering angular distributions and total reaction cross sections for targets from 24Mg to ...
Supported by the National Natural Science Foundation of China(11405099 and 11575291);a part of IAEA Coordinated Research Projects(CRPs)on Recommended Input Parameter Library(RIPL)for Fission Cross Section Calculations(20464)
We achieved a set of 9Be global phenomenological optical model potentials by fitting a large experimental dataset of the elastic scattering observable for target mass numbers from 24 to 209.The obtained 9Be global opt...
Supported partially by the National Basic Research Programme of China under Grant No 2007CB815004, the Shanghai Development Foundation for Science and Technology under Grant No 06JC14082 and 06QA14062, the National Natural Science Foundation of China under Grant Nos 10535010 and 10775167.
We investigate the applicability of the independent atom model (IAM) to elastic electron scattering from complex polyatomic molecules, namely C4H10 and C6H6, in the energy range 100-1000eV. The cross sections of the...
Supported by the National Natural Science Foundation of China(Nos 90301001 and 10425420) and the Supercomputing Center of the Chinese Academy of Sciences
Recently, molecular electronics has become increasingly important. By applying the hybrid density functional theory coupled with the Green's function method, the current-voltage characteristics of the molecular junct...
Supported by the National Natural Science Foundation of China under Grant Nos 10235030 and 10235020, the Major State Basic Research Development Programme under Contract No C20000774.
The Skyrme energy density functional is applied to study the ground state properties of a series of finite nuclei. The charge rms radii, neutron rms radii, and the neutron skin thickness for some nuclei are calculated...