arXiv · cond-mat/9807270
Alternating Spin and Orbital Dimerization in Strong-coupling Two-band Models
Abstract
We study a one-dimensional Hamiltonian consisting of coupled SU(2) spin and orbital degrees of freedom. Using the density matrix renormalization group, we calculate the phase-diagram and the ground state correlation functions for this model. We find that, in addition to the ferromagnetic and power-law antiferromagnetic phases for spin and orbital degrees of freedom, this model has a gapless line extending from the ferromagnetic phase to the Bethe ansatz solvable SU(4) critical point, and a gapped phase with doubly degenerate ground states which form alternating spin and orbital singlets. The spin-gap and the order parameters are evaluated and the relevance to several recently discovered spin-gap materials is discussed.
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Swapan K. Pati, Rajiv R. P. Singh, Daniel I. Khomskii. 1998-07-20. Alternating Spin and Orbital Dimerization in Strong-coupling Two-band Models. https://doi.org/10.1103/physrevlett.81.5406
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