arXiv:nucl-th/0306080·v1·Nuclear Theory
The Gamow-Teller States in Relativistic Nuclear Models
Haruki Kurasawa🇯🇵 · Toshio Suzuki🇯🇵 · Nguyen Van Giai🇫🇷
Abstract
The Gamow-Teller(GT) states are investigated in relativistic models. The Landau-Migdal(LM) parameter is introduced in the Lagrangian as a contact term with the pseudo-vector coupling. In the relativistic model the total GT strength in the nucleon space is quenched by about 12% in nuclear matter and by about 6% in finite nuclei, compared with the one of the Ikeda-Fujii-Fujita sum rule. The quenched amount is taken by nucleon-antinucleon excitations in the time-like region. Because of the quenching, the relativistic model requires a larger value of the LM parameter than non-relativistic models in describing the excitation energy of the GT state. The Pauli blocking terms are not important for the description of the GT states.
Comments: REVTeX4, no figures