Calculations for nuclear matter and finite nuclei within and beyond energy-density-functional theories through interactions guided by effective field theory
Journal article, 2022

We propose a novel idea to construct an effective interaction under energy-density-functional (EDF) theories which is adaptive to the enlargement of the model space. Guided by effective field theory principles, iterations of interactions as well as enlargements of the model space through particle-hole excitations are carried out for infinite nuclear matter and selected closed-shell nuclei (4He, 16O, 40Ca, 56Ni, and 100Sn) up to next-to-leading order. Our approach provides a new way for handling the nuclear matter and finite nuclei within the same scheme, with advantages from both EDF and ab initio approaches.

Author

Chieh-Jen Yang

Chalmers, Physics, Subatomic, High Energy and Plasma Physics

Czech Academy of Sciences

Weiguang Jiang

Chalmers, Physics, Subatomic, High Energy and Plasma Physics

S. Burrello

Technische Universität Darmstadt

M. Grasso

University Paris-Saclay

Physical Review C

24699985 (ISSN) 24699993 (eISSN)

Vol. 106 1 L011305

Subject Categories

Subatomic Physics

Other Physics Topics

Theoretical Chemistry

DOI

10.1103/PhysRevC.106.L011305

More information

Latest update

3/21/2023