Nuclear mass table in deformed relativistic Hartree-Bogoliubov theory in continuum

by DRHBc Mass Table Collaboration
(Updated on: )
Data reference: I: Even-even nuclei, At. Data Nucl. Data Tables 144, 101488 (2022).
II: Even-Z nuclei, At. Data Nucl. Data Tables 158, 101661 (2024).

Introduction

Nowadays the study of exotic nuclei far from the β-stability line is extremely stimulated by the development of radioactive ion beam facilities worldwide and brings opportunities and challenges to existing nuclear theories. In light of the first nuclear mass table including the continuum constructed by the spherical relativistic continuum Hartree-Bogoliubov theory, which largely extends the existing nuclear landscapes predicted with other methods, it is initialized in December 2018 to construct an upgraded version of the mass table including the deformation and continuum effects simultaneously.

The DRHBc Mass Table Collaboration wish to combine the strengths from a number of Universities and Institutions to accomplish the following:

  • To develop the DRHBc theory and extend it to provide a unified description of all even-even, odd-A, and odd-odd nuclei in the nuclear chart by overcoming all possible challenges.
  • To construct the first relativistic nuclear mass table with the deformation and continuum effects by the DRHBc theory.
  • To explore novel phenomena in nuclear physics by the DRHBc theory and various applications of the DRHBc mass table in nuclear astrophysics.
  • To promote and strengthen an active scientific collaboration in the fields of nuclear physics and nuclear astrophysics between the parties.

Members

The DRHBc Mass Table Collaboration is an international collaboration of Universities and Institutions from countries including China, South Korea, and Japan. The current institution members are given in the following. New Universities and Institutions may join the DRHBc Mass Table Collaboration with the approval from the Collaboration Board.

International Workshop on DRHBc Mass Table

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