The phase diagram of the quantum spin-1/2 antiferromagnetic J(1)-J(2) XXZ chain was obtained by Haldane using bosonization techniques [Haldane, Phys. Rev. B 25, 4925 (1982); 26, 5257 (1982)]. It supports three distinct phases for 0 <= J(2)/J(1) < 1/2, i.e., a gapless algebraic spin-liquid phase, a gapped long-range ordered Neel phase, and a gapped long-range ordered dimer phase. Even though the Ned and dimer phases are not related hierarchically by a pattern of symmetry breaking, it was shown that they meet along a line of quantum critical points with a U(1) symmetry and central charge c = 1. Here, we extend the analysis made by Haldane on the quantum spin-1/2 antiferromagnetic J(1)-J(2) XYZ chain using both bosonization and numerical techn...
We perform a numerical study of a spin-1/2 model with ℤ_2 × ℤ_2 symmetry in one dimension which demo...
We study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
International audienceWe develop a framework to analyze the topological properties of one-dimensiona...
We study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
We report on a detailed investigation of the spin-1 J1−J2−J3 Heisenberg model, a frustrated model wi...
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 spin-1/2 chains with long-range power-law decaying unfrustrated (bipartite) Heisenberg exch...
We continue recent efforts to discover examples of deconfined quantum criticality in one-dimensional...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
Applying the (infinite) density-matrix renormalisation group technique, we explore the effect of an ...
Topological quantum phase transitions are numerically investigated in a spin-1/2 dimerized and frust...
Continuous quantum phase transitions beyond the conventional paradigm of fluctuations of a symmetry-...
Continuous quantum phase transitions beyond the conventional paradigm of fluctuations of a symmetry-...
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 study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
International audienceWe develop a framework to analyze the topological properties of one-dimensiona...
We study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
We report on a detailed investigation of the spin-1 J1−J2−J3 Heisenberg model, a frustrated model wi...
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 spin-1/2 chains with long-range power-law decaying unfrustrated (bipartite) Heisenberg exch...
We continue recent efforts to discover examples of deconfined quantum criticality in one-dimensional...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
Applying the (infinite) density-matrix renormalisation group technique, we explore the effect of an ...
Topological quantum phase transitions are numerically investigated in a spin-1/2 dimerized and frust...
Continuous quantum phase transitions beyond the conventional paradigm of fluctuations of a symmetry-...
Continuous quantum phase transitions beyond the conventional paradigm of fluctuations of a symmetry-...
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 study quantum phase transitions between competing orders in one-dimensional spin systems. We focu...
International audienceWe develop a framework to analyze the topological properties of one-dimensiona...