Relativistic Spin-Isospin Dependent Response Function of Nucleus
-
Abstract
A full relativistic formalism is employed to derive the relativistic particle-hole and delta-hole excitation polarization insertion of pion propagator in nuclear matter. The spin-isospin-dependent response function of nucleus at high energy-momentum transfer is calculated with the nuclear matter approximation. The short range correlation effect, two-nucleon absorption and nucleus form factor effects are included in the calculation. The position and width of the resonance peak of the spin-isospin mode are reproduced and found to be coincident with experiment data. The position of the peak and its width is sensitive to Landau-Migdal parameter g’ which is about 0.6.
Article Text
-
-
-
About This Article
Cite this article:
LIU Liang-Gang, CHEN Wei, AI Bao-Quan, ZHENG Xiao-Ping, Masahiro Nakano. Relativistic Spin-Isospin Dependent Response Function of Nucleus[J]. Chin. Phys. Lett., 2000, 17(9): 652-654.
LIU Liang-Gang, CHEN Wei, AI Bao-Quan, ZHENG Xiao-Ping, Masahiro Nakano. Relativistic Spin-Isospin Dependent Response Function of Nucleus[J]. Chin. Phys. Lett., 2000, 17(9): 652-654.
|
LIU Liang-Gang, CHEN Wei, AI Bao-Quan, ZHENG Xiao-Ping, Masahiro Nakano. Relativistic Spin-Isospin Dependent Response Function of Nucleus[J]. Chin. Phys. Lett., 2000, 17(9): 652-654.
LIU Liang-Gang, CHEN Wei, AI Bao-Quan, ZHENG Xiao-Ping, Masahiro Nakano. Relativistic Spin-Isospin Dependent Response Function of Nucleus[J]. Chin. Phys. Lett., 2000, 17(9): 652-654.
|