We continue recent efforts to discover examples of deconfined quantum criticality in one-dimensional models. In this work we investigate the transition between a Z₃ ferromagnet and a phase with valence bond solid (VBS) order in a spin chain with Z₃×Z₃ global symmetry. We study a model with alternating projective representations on the sites of the two sublattices, allowing the Hamiltonian to connect to an exactly solvable point having VBS order with the character of SU(3)-invariant singlets. Such a model does not admit a Lieb-Schultz-Mattis theorem typical of systems realizing deconfined critical points. Nevertheless, we find evidence for a direct transition from the VBS phase to a Z₃ ferromagnet. Finite-entanglement scaling data are consis...
Numerical studies of the transition between Néel and valence bond solid phases in two-dimensional qu...
The criticality between the nematic and valence-bond-solid (VBS) phases was investigated for the two...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We continue recent efforts to discover examples of deconfined quantum criticality in one-dimensional...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We study a one-dimensional (1D) system that shows many analogies to proposed two-dimensional (2D) de...
The phase diagram of the quantum spin-1/2 antiferromagnetic J(1)-J(2) XXZ chain was obtained by Hald...
We use quantum Monte Carlo simulations to study an S = 1/2 spin model with competing multi-spin inte...
We study spin-1/2 chains with long-range power-law decaying unfrustrated (bipartite) Heisenberg exch...
Using quantum Monte Carlo simulations, we study a series of models of fermions coupled to quantum Is...
We study a spin-1/2 SU(2) model on the honeycomb lattice with nearest-neighbor antiferromagnetic exc...
We use the multiscale entanglement renormalization ansatz (MERA) to numerically investigate three cr...
We use the multiscale entanglement renormalization ansatz (MERA) to numerically investigate three cr...
Numerical studies of the transition between Néel and valence bond solid phases in two-dimensional qu...
The criticality between the nematic and valence-bond-solid (VBS) phases was investigated for the two...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...
We continue recent efforts to discover examples of deconfined quantum criticality in one-dimensional...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We study a one-dimensional (1D) system that shows many analogies to proposed two-dimensional (2D) de...
The phase diagram of the quantum spin-1/2 antiferromagnetic J(1)-J(2) XXZ chain was obtained by Hald...
We use quantum Monte Carlo simulations to study an S = 1/2 spin model with competing multi-spin inte...
We study spin-1/2 chains with long-range power-law decaying unfrustrated (bipartite) Heisenberg exch...
Using quantum Monte Carlo simulations, we study a series of models of fermions coupled to quantum Is...
We study a spin-1/2 SU(2) model on the honeycomb lattice with nearest-neighbor antiferromagnetic exc...
We use the multiscale entanglement renormalization ansatz (MERA) to numerically investigate three cr...
We use the multiscale entanglement renormalization ansatz (MERA) to numerically investigate three cr...
Numerical studies of the transition between Néel and valence bond solid phases in two-dimensional qu...
The criticality between the nematic and valence-bond-solid (VBS) phases was investigated for the two...
We use quantum Monte Carlo methods to study the ground-state phase diagram of a S=1/2 honeycomb latt...