We model nickelate-centered and oxygen-centered stripe phases in doped
La2NiO4 materials. We use an inhomogeneous Hartree-Fock and random-ph
ase approximation approach including both electron-electron and electr
on-lattice (e-l) coupling for a layer of La2NiO4. We find that whether
the ground state after commensurate hole doping comprises Ni-centered
or O-centered charge-localized stripes depends sensitively on the e-l
interaction. With increasing e-l interaction strength, a continuous t
ransition from an O-centered stripe phase to a Ni-centered one is foun
d. Various low- and high-energy signatures of these two kinds of strip
e phases are predicted, which can clearly distinguish them. These sign
atures reflect the strongly correlated spin-charge-lattice features in
the vicinity of Ni-centered or O-centered stripe domains. The importa
nce of e-l interaction for recent experiments on stripe phases is disc
ussed. [S0163-1829(98)06925-2].