Magnetic polarons in weakly doped high-Tc superconductors
arXiv:cond-mat/0105254 · doi:10.1103/PhysRevB.66.064521
Abstract
We consider a spin Hamiltonian describing - exchange interactions between localized spins of a finite antiferromagnet as well as - interactions between a conducting hole () and localized spins. The spin Hamiltonian is solved numerically with use of Lanczos method of diagonalization. We conclude that - exchange interaction leads to localization of magnetic polarons. Quantum fluctuations of the antiferromagnet strengthen this effect and make the formation of polarons localized in one site possible even for weak - coupling. Total energy calculations, including the kinetic energy, do not change essentially the phase diagram of magnetic polarons formation. For parameters reasonable for high- superconductors either a polaron localized on one lattice cell or a small ferron can form. For reasonable values of the dielectric function and - coupling, the contributions of magnetic and phonon terms in the formation of a polaron in weakly doped high- materials are comparable.
revised, revtex-4, 12 pages 8 eps figures