7 papers
Deformation effects on reaction observables of beryllium nuclei from ab initio densities
Qi Lu, Rui-Feng Tian, Shi-Sheng Zhang +2
We combine three-dimensional intrinsic densities from ab initio nuclear lattice effective field theory with a deformed Glauber model to study high-energy reactions of {7-12}Be. To…
Predicting reaction observables for the two-neutron halo candidates F and Na
Jia-Lin An, Li-Yang Wang, Kaiyuan Zhang +1
Microscopic description of two-neutron () halo candidates F and Na has been realized from nuclear structure to reaction observables for the first time. The reliab…
One neutron triaxial halo candidates in aluminum isotopes from reaction observables
Jia-Lin An, Shi-Sheng Zhang, Kaiyuan Zhang
Microscopic description of one neutron () halo candidates Al, with particular triaxial shape, is presented by combining the triaxial relativistic Hartree-Bogoliubov t…
Extracting Resonance Width from Lattice Quantum Monte Carlo Simulations Using Analytical Continuation Method
Zhong-Wang Niu, Shi-Sheng Zhang, Bing-Nan Lu
Nuclear lattice effective field theory (NLEFT) provides an efficient ab initio framework for computing low-lying states via imaginary-time projection. However, the extraction of un…
Nanosecond-Scale Proton Emission from Triaxially Deformed Lu-148 Predicted with High Accuracy Qp Value via Novel Bayesian Evaluation
Lin-Xing Zeng, Qi Lu, Kaiyuan Zhang +1
The half-life of the odd-odd deformed proton emitter Lu is predicted to be ns via the Wentzel-Kramers-Brillouin (WKB) approximation, in which the potent…
Exploration on halo nucleus C from D-RHFB structure to reaction observables
Jia-Lin An, Qi Lu, Wen Hui Long +1
We utilize the axially deformed relativistic Hartree-Fock-Bogoliubov (D-RHFB) model to describe the structure of neutron-rich carbon isotopes, taking into account the continuum, pa…