1Zexpansion study of the(1s)22sS2and(1s)22pP2states of the lithium isoelectronic sequence

Abstract
A 1Z expansion method is used to calculate the eigenvalues and eigenfunctions for the (1s)22sS2 and (1s)22pP2 states of the lithium isoelectronic sequence. The dipole-length and dipole-velocity forms of the oscillator strengths for the 2s2p resonance transitions are compared with the results of direct variational calculations for individual values of the nuclear charge Z. It is explicitly demonstrated that the length formulation of the dipole matrix element is more accurate than the velocity formulation for the 2s2p transitions.