activity
20182020
most citedAb initio Gamow in-medium similarity renormalization group with resonance and continuum

46 citations · 84 across the 2 of their papers we have counts for

collaborators

6 papers

nucl-th2020

Neutron-rich calcium isotopes within realistic Gamow shell model calculations with continuum coupling

J. G. Li, B. S. Hu, Q. Wu +3

Based on the realistic nuclear force of the high-precision CD-Bonn potential, we have performed comprehensive calculations for neutron-rich calcium isotopes using the Gamow shell m…

nucl-th2020

Nuclear multipole responses from chiral effective field theory interaction

B. S. Hu, Q. Wu, Q. Yuan +3

We probe nuclear multipole resonances in the framework of the random-phase approximation by using the interaction obtained from the chiral effective field theory. The three-nucleon…

nucl-th202038 cited

An {\it ab-initio} Gamow shell model approach with a core

B. S. Hu, Q. Wu, J. G. Li +4

Gamow shell model (GSM) is usually performed within the Woods-Saxon (WS) basis in which the WS parameters need to be determined by fitting experimental single-particle energies inc…

nucl-th201946 cited

Ab initio Gamow in-medium similarity renormalization group with resonance and continuum

B. S. Hu, Q. Wu, Z. H. Sun +1

We have developed a novel ab initio Gamow in-medium similarity renormalization group (Gamow IMSRG) in the complex-energy Berggren framework. The advanced Gamow IMSRG is capable of…

nucl-th2018

Resonances of unbound quantum many-body systems of nuclei

B. S. Hu, Q. Wu, Z. H. Sun +1

Resonance is a general phenomenon which can happen in classic or quantum systems. An unbound many-body quantum system can undergo a self-resonant process. It has long been a challe…

nucl-th2018

{\it Ab initio} perturbation calculations of realistic effective interactions in the Hartree--Fock basis

Q. Wu, F. R. Xu, B. S. Hu +1

We perform two types of {\it ab initio} perturbation calculations of effective interactions in the Hartree--Fock (HF) basis instead of the harmonic-oscillator basis: one is called…