ANISOTROPIC SPIN HAMILTONIANS DUE TO SPIN-ORBIT AND COULOMB EXCHANGE INTERACTIONS

被引:136
作者
YILDIRIM, T
HARRIS, AB
AHARONY, A
ENTINWOHLMAN, O
机构
[1] NATL INST STAND & TECHNOL,GAITHERSBURG,MD 20899
[2] UNIV PENN,DEPT PHYS,PHILADELPHIA,PA 19104
[3] TEL AVIV UNIV,RAYMOND & BEVERLY SACKLER FAC EXACT SCI,SCH PHYS & ASTRON,IL-69978 TEL AVIV,ISRAEL
来源
PHYSICAL REVIEW B | 1995年 / 52卷 / 14期
关键词
D O I
10.1103/PhysRevB.52.10239
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Here we correct, extend, and clarify results concerning the spin Hamiltonian Hs used to describe the ground manifold of Hubbard models for magnetic insulators in the presence of spin-orbit interactions. Most of our explicit results are for a tetragonal lattice as applied to some of the copper oxide lamellar systems and are obtained within the approximation that H-S consists of a sum of nearest-neighbor bond Hamiltonians. We consider both a ''generic'' model in which hopping takes place from one copper ion to another and a ''real'' model in which holes can hop from a copper ion to an intervening oxygen 2p band. Both models include orbitally dependent direct and exchange Coulomb interactions involving two orbitals. Our analytic results have been confirmed by numerical diagonalizations for two holes occupying any of the 3d states and, if applicable, the oxygen 2p states. An extension of the perturbative scheme used by Moriya is used to obtain analytic results for H-S up to order t(2) (t is the matrix of hopping coefficients) for arbitrary crystal symmetry for both the ''generic'' and ''real'' models. With only direct orbitally independent Coulomb interactions, our results reduce to Moriya's apart from some minor modifications. For the tetragonal case, we show to all orders in t and lambda, the spin-orbit coupling constant, that H-S is isotropic in the absence of Coulomb exchange terms and assuming only nearest-neighbor hopping. In the presence of Coulomb exchange, scaled by K, the anisotropy in H-S is biaxial and is shown to be of order Kt(2) lambda(2). Even when K = 0, for systems of sufficiently low symmetry, the anisotropy in H-S is proportional to t(6) lambda(2) when the direct on-site Coulomb interaction U is independent of the orbitals involved and of order t(2) lambda(2) otherwise. These latter results apply to the orthorhombic phase of La2CuO4.
引用
收藏
页码:10239 / 10267
页数:29
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