Using the density-matrix renormalization group algorithm (DMRG) and a finite-size scaling analysis, we study the properties of the one-dimensional completely anisotropic spin-1/2 XYZ model with Dzyaloshinsky-Moriya (DM) interactions. The model shows a rich phase diagram: depending on the value of the coupling constants, the system can display different kinds of ferromagnetic order and Luttinger liquid behavior. Transitions from ferromagnetic to Luttinger liquid phases are first order. We thoroughly discuss the transition between different ferromagnetic phases, which, in the absence of DM interactions, belongs to the XX universality class. We provide evidence that the DM exchange term splits this critical line into two separated Ising-like t...
interactions: from spin-orbit-coupled lattice bosons to interacting Kitaev chain
The density matrix renormalization group method (DMRG) is a powerful numerical method for strongly c...
Motivated by recent experiments that detects Dzyaloshinskii-Moriya (DM) interaction in , we study th...
Using the density-matrix renormalization group algorithm (DMRG) and a finite-size scaling analysis, ...
We investigate an antiferromagnetic spin-1 Heisenberg chain in the presence of Dyzaloshinskii-Moriya...
The ground-state phase diagram of a spin S=12XXZ Heisenberg chain with spatially modulated Dzyaloshi...
The one-dimensional (1D) isotropic frustrated ferromagnetic spin-1/2 model is considered. Classical ...
peer reviewedWe investigate an antiferromagnetic spin-1 Heisenberg chain in the presence of Dyzalosh...
The spin-1 XYZ model is studied in terms of a mean-field (MF) approach by introducing the spin opera...
We study the effects of the Dzyaloshinski-Moriya (DM) anisotropic interaction on the ground-state pr...
The spin-1/2 Heisenberg model is formulated in terms of a mean-field approximation (MFA) by using th...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
interactions: from spin-orbit-coupled lattice bosons to interacting Kitaev chain
The density matrix renormalization group method (DMRG) is a powerful numerical method for strongly c...
Motivated by recent experiments that detects Dzyaloshinskii-Moriya (DM) interaction in , we study th...
Using the density-matrix renormalization group algorithm (DMRG) and a finite-size scaling analysis, ...
We investigate an antiferromagnetic spin-1 Heisenberg chain in the presence of Dyzaloshinskii-Moriya...
The ground-state phase diagram of a spin S=12XXZ Heisenberg chain with spatially modulated Dzyaloshi...
The one-dimensional (1D) isotropic frustrated ferromagnetic spin-1/2 model is considered. Classical ...
peer reviewedWe investigate an antiferromagnetic spin-1 Heisenberg chain in the presence of Dyzalosh...
The spin-1 XYZ model is studied in terms of a mean-field (MF) approach by introducing the spin opera...
We study the effects of the Dzyaloshinski-Moriya (DM) anisotropic interaction on the ground-state pr...
The spin-1/2 Heisenberg model is formulated in terms of a mean-field approximation (MFA) by using th...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
By using Density Matrix Renormalization Group (DMRG) technique we study the phase diagram of 1D exte...
interactions: from spin-orbit-coupled lattice bosons to interacting Kitaev chain
The density matrix renormalization group method (DMRG) is a powerful numerical method for strongly c...
Motivated by recent experiments that detects Dzyaloshinskii-Moriya (DM) interaction in , we study th...