Supersolid states in a spin system-phase diagram and collective excitations
arXiv:1305.4758 · doi:10.1103/PhysRevB.88.224404
Abstract
Phases analogous to supersolids can be realized in spin systems. Here we obtain the phase diagram of a frustrated dimer spin-1/2 system on a square lattice and study the collective excitation spectra, focusing on the supersolid state (SS). In the phase diagram on a parameter space of the exchange interaction and magnetic field, we find, on top of the SS phase, a phase that has no counterpart in the Bose Hubbard model and this state becomes dominant at the region where the enhancement of SS occurs in the bose Hubbard model. We then investigate the excitation spectrum and spin- spin correlation, which can be detected by neutron scattering experiments. We obtain an analytic expression for the spin wave velocity, which agrees with hydrodynamic relations. The intensity of excitation modes in the spin-spin correlation function is calculated and their change in the supersolid and superfluid states is discussed.
References in corpus (11)
- Bose-Einstein Condensation in Magnetic Insulators
- Counting rule for Nambu-Goldstone modes in nonrelativistic systems
- Dynamical properties of ultracold bosons in an optical lattice
- Density wave and supersolid phases of correlated bosons in an optical lattice
- Field Induced Supersolid Phase in Spin-One Heisenberg Models
- Bose-Einstein Condensation of Magnons in TlCuCl3: Phase diagram and specific heat from a self-consistent Hartee-Fock calculation with a realistic dispersion relation
- Supersolid phase induced by correlated hopping in spin-1/2 frustrated quantum magnets
- Quantum and thermal transitions out of the supersolid phase of a 2D quantum antiferromagnet
- Supersolid phase in spin dimer XXZ systems under magnetic field
- Mechanisms for Spin-Supersolidity in S=1/2 Spin-Dimer Antiferromagnets
- Phase separation versus supersolid behavior in frustrated antiferromagnets
Cited by in corpus (15)
- Theoretical possibilities for flat-band superconductivity
- Phase diagram and collective excitation in excitonic insulator: from the orbital physics viewpoint
- Almost Perfect Frustration in the Dimer Magnet BaCoSiOCl
- Antisymmetric Thermopolarization by Electric Toroidicity
- Field-Induced Quantum Phases in Frustrated Spin-Dimer Model: A Sign-Problem-Free Quantum Monte Carlo Study
- Supersolid Phase Accompanied by a Quantum Critical Point in the Intermediate Coupling Regime of the Holstein Model
- Frustrated honeycomb-lattice bilayer quantum antiferromagnet in a magnetic field: Unconventional phase transitions in a two-dimensional isotropic Heisenberg model
- Spin Seebeck Effect in Nonmagnetic Excitonic Insulators
- Frustrated diamond-chain quantum Heisenberg antiferromagnet in a magnetic field
- Simulating Spin Dynamics of Supersolid States in a Quantum Ising Magnet
- A high-order study of the quantum critical behavior of a frustrated spin- antiferromagnet on a stacked honeycomb bilayer
- Spin supersolid phase in coupled alternating spin chains
- Localized magnetic excitations in the fully frustrated dimerized magnet BaCoSiOCl
- Mixed-spin system with supersolid phases: Magnetocaloric effect and thermal properties
- Frustrated kagome-lattice bilayer quantum Heisenberg antiferromagnet