UNIFIED NUCLEAR-POTENTIAL FOR HEAVY-ION ELASTIC-SCATTERING, FUSION, FISSION, AND GROUND-STATE MASSES AND DEFORMATIONS

被引:823
作者
KRAPPE, HJ [1 ]
NIX, JR [1 ]
SIERK, AJ [1 ]
机构
[1] UNIV CALIF LOS ALAMOS SCI LAB, DIV THEORET, LOS ALAMOS, NM 87545 USA
来源
PHYSICAL REVIEW C | 1979年 / 20卷 / 03期
关键词
D O I
10.1103/PhysRevC.20.992
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
We develop a unified nuclear potential for the description of large-scale nuclear collective motion and find that it satisfactorily reproduces experimental data for heavy-ion elastic scattering, fusion, fission, and ground-state masses. Obtained by generalizing the modified liquid-drop model so that two semi-infinite slabs of constant-density nuclear matter have minimum energy at zero separation, this potential is given in terms of a double volume integral of a Yukawa-plus-exponential folding function. For heavy nuclear systems the resulting heavy-ion interaction potential is similar to the proximity potential of Swiatecki and co-workers. However, for light nuclear systems our potential lies slightly below the proximity potential at all nuclear separations. For heavy nuclei fission barriers calculated with our Yukawa-plus-exponential model are similar to those calculated with the liquid-drop model. However, for light nuclei the finite range of the nuclear force and the diffuse nuclear surface lower the fission barriers relative to those calculated with the liquid-drop model. Use of a Wigner term proportional to |N-Z|A in the nuclear mass formula resolves the major part of the anomaly between nuclear radii derived from elastic electron scattering on the one hand and from ground-state masses and fission-barrier heights on the other. NUCLEAR REACTIONS He4+C12, O16+Si28, Kr84+Pb208; calculated heavy-ion interaction potential. O16+Si28, E=37.7, 81.0, 215.2 MeV; calculated elastic-scattering angular distribution. S32+Al27, Cl35+Ni62, O16+Pb208; calculated compound-nucleus cross section. Calculated fission-barrier heights and ground-state masses for nuclei throughout Periodic Table. Nuclear potential energy of deformation, liquid-drop model, droplet model, modified liquid-drop model, Yukawa-plus-exponential model, proximity potential, Woods-Saxon potential, double-folding potential, optical model, ingoing-wave boundary condition, single-particle corrections, Strutinsky's method. © 1979 The American Physical Society.
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页码:992 / 1013
页数:22
相关论文
共 82 条
[1]  
Abramowitz M., 1964, HDB MATH FUNCTIONS F, P437
[2]   FISSION OF DOUBLY EVEN ACTINIDE NUCLEI INDUCED BY DIRECT REACTIONS [J].
BACK, BB ;
HANSEN, O ;
BRITT, HC ;
GARRETT, JD .
PHYSICAL REVIEW C, 1974, 9 (05) :1924-1947
[3]   HEAVY-ION ELASTIC-SCATTERING SURVEY .1. PB-208 TARGET [J].
BALL, JB ;
FULMER, CB ;
GROSS, EE ;
HALBERT, ML ;
HENSLEY, DC ;
LUDEMANN, CA ;
SALTMARSH, MJ ;
SATCHLER, GR .
NUCLEAR PHYSICS A, 1975, 252 (01) :208-236
[4]   NUCLEAR SURFACE EFFECTS [J].
BERG, RA ;
WILETS, L .
PHYSICAL REVIEW, 1956, 101 (01) :201-204
[5]   THOMAS-FERMI THEORY OF NUCLEI [J].
BETHE, HA .
PHYSICAL REVIEW, 1968, 167 (04) :879-&
[6]   Nuclear physics A. Stationary states of nuclei [J].
Bethe, HA ;
Bacher, RF .
REVIEWS OF MODERN PHYSICS, 1936, 8 (02) :0082-0229
[7]   DETERMINATION OF INTER-NUCLEAR POTENTIALS FROM HEAVY-ION FUSION EXCITATION-FUNCTIONS [J].
BIRKELUND, JR ;
HUIZENGA, JR .
PHYSICAL REVIEW C, 1978, 17 (01) :126-130
[8]   HEAVY-ION FUSION BASED ON PROXIMITY POTENTIAL AND ONE-BODY FRICTION [J].
BIRKELUND, JR ;
HUIZENGA, JR ;
DE, JN ;
SPERBER, D .
PHYSICAL REVIEW LETTERS, 1978, 40 (17) :1123-1127
[9]  
BLOCKI J, 1977, ANN PHYS-NEW YORK, V105, P427, DOI 10.1016/0003-4916(77)90249-4
[10]   The mechanism of nuclear fission [J].
Bohr, N ;
Wheeler, JA .
PHYSICAL REVIEW, 1939, 56 (05) :426-450