Spin dynamics of the generalized quantum spin compass chain
Pontus Laurell, Gonzalo Alvarez, Elbio Dagotto

TL;DR
This paper investigates the dynamical spin structure factor of the generalized quantum spin compass chain, revealing a transition from gapped to gapless excitations and extensive degeneracy at the Kitaev point, with implications for experimental materials.
Contribution
It provides a detailed numerical study of the spin structure factor in the generalized spin compass chain, connecting it to analytical results and experimental relevance.
Findings
Structure factor interpolates from gapped to gapless across the model
Perpendicular component becomes a dispersionless continuum at the Kitaev point
Results are consistent with Jordan-Wigner analytical solutions
Abstract
We calculate the dynamical spin structure factor of the generalized spin- compass spin chain using the density matrix renormalization group. The model, also known as the twisted Kitaev spin chain, was recently proposed to be relevant for the description of the spin chain compound CoNbO. It features bond-dependent interactions and interpolates between an Ising chain and a one-dimensional variant of Kitaev's honeycomb spin model. The structure factor, in turn, is found to interpolate from gapped and non-dispersive in the Ising limit to gapless with non-trivial continua in the Kitaev limit. In particular, the component of the structure factor perpendicular to the Ising directions changes abruptly at the Kitaev point into a dispersionless continuum due to the emergence of an extensive groundstate degeneracy. We show this continuum is consistent with analytical Jordan-Wigner…
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Taxonomy
TopicsAdvanced Condensed Matter Physics · Physics of Superconductivity and Magnetism · Quantum many-body systems
