Single particle calculations for a Woods–Saxon potential with triaxial deformations, and large Cartesian oscillator basis (new version code)
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http://doi.org/10.17632/n68bg3nwcr.1
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Abstract
We present a new version of the computer program which solves the Schrödinger equation of the stationary states for an average nuclear potential of Woods-Saxon type. In this work, we take specifically into account triaxial (i.e. ellipsoidal) nuclear surfaces. The deformation is specified by the usual Bohr parameters. The calculations are carried out in two stages. In the first, one calculates the representative matrix of the Hamiltonian in the Cartesian oscillator basis. In the second stage o...
Title of program: Triaxial2007
Catalogue Id: ADSK_v2_0
Nature of problem
The Single particle energies and the single particle wave functions are calculated from one-body Hamiltonian including a central field of Woods-Saxon type, a spin-orbit interaction, and the Coulomb potential for the protons. We consider only ellipsoidal (triaxial) shapes. The deformation of the nuclear shape is fixed by the usual Bohr parameters (Β, Γ) .
Versions of this program held in the CPC repository in Mendeley Data
ADSK_v1_0; Triaxial; 10.1016/S0010-4655(03)00464-8
ADSK_v2_0; Triaxial2007; 10.1016/j.cpc.2007.02.096
ADSK_v3_0; Triaxial2014; 10.1016/j.cpc.2014.07.016
This program has been imported from the CPC Program Library held at Queen's University Belfast (1969-2018)
本报告呈现了一种新型计算机程序,该程序求解伍兹-萨克森型平均核势能的定态薛定谔方程。本研究特别考虑了三轴(即椭球形)核表面。核形变通过常规的波尔参数进行规定。计算分为两个阶段进行。在第一阶段,计算哈密顿量在笛卡尔振子基下的代表矩阵。在第二阶段,...
提供机构:
Mendeley Data



