Few-magnon excitations in a frustrated spin- ferromagnetic chain with single-ion anisotropy
arXiv:2401.14101 · doi:10.1103/PhysRevB.109.174403
Abstract
We study few-magnon excitations in a finite-size spin- chain with ferromagnetic nearest-neighbor (NN) interaction and antiferromagnetic next-nearest-neighbor (NNN) interaction , in the presence of the single-ion (SI) anisotropy . We first reveal the condition for the emergence of zero-excitation-energy states. In the isotropic case with ( and are the corresponding anisotropy parameters), a threshold of above which the ground state is ferromagnetic is determined by exact diagonalization for short chains up to sites. Using a set of exact two-magnon Bloch states, we then map the two-magnon problem to a single-particle one on an effective open chain with both NN and NNN hoppings. The whole two-magnon excitation spectrum is calculated for large systems and the commensurate-incommensurate transition in the lowest-lying mode is found to exhibit different behaviors between and higher spins due to the interplay of the SI anisotropy and the NNN interaction. For the commensurate momentum , the effective lattice is decoupled into two NN open chains that can be exactly solved via a plane-wave ansatz. Based on this, we analytically identify in the plane the regions supporting the SI or NNN exchange two-magnon bound states near the edge of the band. In particular, we prove that there always exists a lower-lying NN exchange two-magnon bound state near the band edge for arbitrary . Finally, we numerically calculate the -magnon spectra for with by using a spin-operator matrix element method. The corresponding -magnon commensurate instability regions are determined for finite chains and consistent results with prior literature are observed.
18 pages, 11 figures, to appear in Physical Review B
References in corpus (17)
- Vector chiral and multipolar orders in the spin-1/2 frustrated ferromagnetic chain in magnetic field
- Spin transport in a tunable Heisenberg model realized with ultracold atoms
- Emergent multipolar spin correlations in a fluctuating spiral - The frustrated ferromagnetic S=1/2 Heisenberg chain in a magnetic field
- Frustrated ferromagnetic spin-1/2 chain in a magnetic field: The phase diagram and thermodynamic properties
- Multi-magnon bound states in the frustrated ferromagnetic 1D chain
- Correlation functions and excitation spectrum of the frustrated ferromagnetic spin-1/2 chain in an external magnetic field
- Exact one- and two-particle excitation spectra of acute-angle helimagnets above their saturation magnetic field
- Observation of magnon bound states in the long-range, anisotropic Heisenberg model
- Tunable Single-Ion Anisotropy in Spin-1 Models Realized with Ultracold Atoms
- Dynamical signatures of quasiparticle interactions in quantum spin chains
- The quantum Ising chain with a generalized defect
- Multi-particle quantum walks and Fisher information in one-dimensional lattices
- Preparation of the spin-Mott state: a spinful Mott insulator of repulsively bound pairs
- Multimagnon dynamics and thermalization in the easy-axis ferromagnetic chain
- Determinant representations of spin-operator matrix elements in the XX spin chain and their applications
- Exact solutions of few-magnon problems in the spin- periodic XXZ chain
- Roles of easy-plane and easy-axis XXZ anisotropy and bond alternation on a frustrated ferromagnetic spin- chain