TY - JOUR
T1 - Microscopic analysis of spherical to γ-soft shape transitions in Zn isotopes
AU - Song, Chun Yan
AU - Li, Zhi Pan
AU - Vretenar, Dario
AU - Meng, Jie
PY - 2011/2
Y1 - 2011/2
N2 - The rapid transition between spherical and γ-soft shapes in Zn isotopes in the mass A ≤ 70 region, is analyzed using excitation spectra and collective wave functions obtained by diagonalization of a five-dimensional Hamiltonian for quadrupole vibrational and rotational degrees of freedom, with parameters determined by constrained self-consistent relativistic mean-field calculations for triaxial shapes. The microscopic potential energy surfaces, together with the characteristic collective observables, illustrate a rapid transition from near spherical shape at the N = 40 subshell, to γ-soft deformed shapes for lighter isotopes. The calculated spectra display fingerprints of a second-order shape phase transition that can be approximately described by the E(5) analytic solution.
AB - The rapid transition between spherical and γ-soft shapes in Zn isotopes in the mass A ≤ 70 region, is analyzed using excitation spectra and collective wave functions obtained by diagonalization of a five-dimensional Hamiltonian for quadrupole vibrational and rotational degrees of freedom, with parameters determined by constrained self-consistent relativistic mean-field calculations for triaxial shapes. The microscopic potential energy surfaces, together with the characteristic collective observables, illustrate a rapid transition from near spherical shape at the N = 40 subshell, to γ-soft deformed shapes for lighter isotopes. The calculated spectra display fingerprints of a second-order shape phase transition that can be approximately described by the E(5) analytic solution.
KW - E(5) critical-point symmetry
KW - Five-dimensional hamiltonian
KW - Quantum phase transitions
UR - https://www.scopus.com/pages/publications/79955899565
U2 - 10.1007/s11433-010-4219-3
DO - 10.1007/s11433-010-4219-3
M3 - 文章
AN - SCOPUS:79955899565
SN - 1674-7348
VL - 54
SP - 222
EP - 226
JO - Science China: Physics, Mechanics and Astronomy
JF - Science China: Physics, Mechanics and Astronomy
IS - 2
ER -