-W. XS, -X. XY, -K. LZ, -R. XF, -L. LH, -B. XY, B. G, -P. XJ.
beta-delayed proton decays and spin assignments for Sm-133 and Yb-149. European Physical Journal A. 2006;29:161.
Octupole deformation in even-even Rn-Th nuclei. High Energy Physics and Nuclear Physics-Chinese Edition. 2006;30:78.
LH Z, ZL Z, XG W, FR X, GS L, ZM W, CY H, Y W, R M.
Shape-driving effect of the proton 1/2[541] band in Ta-171. European Physical Journal A. 2006;27:137.
Coulomb displacement energies and shell closure. High Energy Physics and Nuclear Physics-Chinese Edition. 2006;30:84.
H. ZY, H. ZX, J. HJ, Z. L, D. FY, T. GW, G. LX, X. GY, Moyo NM.
Search for signature inversion in the pi i(13/2) circle times upsilon i1(3/2) bands in Au-182,Au-184,Au-186. International Journal of Modern Physics E-Nuclear Physics. 2006;15:1437.
Xu FR, Pei JC.
Mean-field cluster potentials for various cluster decays. Physics Letters B [Internet]. 2006;642:322 - 325.
访问链接AbstractBased on a self-consistent mean-field model, a folding form of cluster potentials has been suggested, leading to the simple parameter-free quantum tunneling calculations of various cluster decays in atomic nuclei. The mean-field-type potential provides a ground for the descriptions of both shell structure and cluster property in nuclei. The α-particle, heavier-cluster and diproton decays of even–even nuclei above magic numbers have been investigated, showing a good agreement with experimental data. The parameter-free calculation is particularly useful for the predictions of the decay properties of exotic nuclei where experimental data are scarce and self-consistent shell models have worked well.