Effective mapping of spin-1 chains onto integrable fermionic models. A study of string and Neel correlation functions
C. Degli Esposti Boschi, M. Di Dio, G. Morandi, M. Roncaglia

TL;DR
This paper analytically maps a spin-1 chain model to a fermionic system to study correlation functions, revealing long-range string order in the Haldane phase and detailed decay behaviors across phases.
Contribution
It introduces an approximate mapping of a spin-1 Hamiltonian onto a fermionic model, enabling explicit calculation of correlation functions and string order parameters.
Findings
Long-range string order exists in the Haldane phase.
Correlation decay is exponential with algebraic factors in gapped phases.
Transverse correlators exhibit a finite characteristic length at criticality.
Abstract
We derive the dominant contribution to the large-distance decay of correlation functions for a spin chain model that exhibits both Haldane and Neel phases in its ground state phase diagram. The analytic results are obtained by means of an approximate mapping between a spin-1 anisotropic Hamiltonian onto a fermionic model of noninteracting Bogolioubov quasiparticles related in turn to the XY spin-1/2 chain in a transverse field. This approach allows us to express the spin-1 string operators in terms of fermionic operators so that the dominant contribution to the string correlators at large distances can be computed using the technique of Toeplitz determinants. As expected, we find long-range string order both in the longitudinal and in the transverse channel in the Haldane phase, while in the Neel phase only the longitudinal order survives. In this way, the long-range string order can be…
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