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Spin-orbital gapped phase with least symmetry breaking in the one-dimensional symmetrically coupled spin-orbital model

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posted on 2024-07-12, 14:55 authored by Guang-Ming Zhang, Hui HuHui Hu, Lu Yu
To describe the spin-orbital energy gap formation in the one-dimensional symmetrically coupled spin-orbital model, we propose a simple mean-field theory based on an SU(4) constraint fermion representation of spins and orbitals. A spin-orbital gapped phase is formed due to a marginally relevant spin-orbital valence bond pairing interaction. The energy gap of the spin and orbital excitations grows extremely slowly from the SU(4)-symmetric point up to a maximum value and then decreases rapidly. By calculating the spin, orbital, and spin-orbital tensor static susceptibilities at zero temperature, we find a crossover from coherent to incoherent magnetic excitations as the spin-orbital coupling decreases from large to small values.

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PDF (Accepted manuscript)

ISSN

0163-1829

Journal title

Physical Review B: Condensed Matter and Materials Physics

Volume

67

Issue

6

Article number

article no. 064420

Publisher

American Physical Society

Copyright statement

Copyright © 2003 The American Physical Society. The accepted manuscript is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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