We investigate the ground-state phase diagram of a spin-1/2 honeycomb-lattice antiferromagnetic (AF) Heisenberg model with three exchange interactions, J A , J B , and J C , that is realized in a distorted honeycomb-lattice antiferromagnet Cu 2 ( pymca ) 3 ( ClO 4 ) . We remeasured the magnetic susceptibility of its polycrystalline sample with special care and determined the exchange parameters of this material through the comparison with numerical results based on a quantum Monte Carlo (QMC) method. The QMC method also provides a ground-state phase diagram in the J A / J C − J B / J C plane. The phase diagram consists of a small N ˊ e el phase and a gapped quantum paramagnetic phase surrounding the N ˊ e el phase. The latter includes six r...
We present a spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in th...
We investigate the structural and magnetic properties of two molecule-based magnets synthesized from...
International audienceMotivated by the rich physics of honeycomb magnetic materials, we obtain the p...
We investigate the spin S = 1/2 Heisenberg model on the body centered cubic lattice in the presence ...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
Quantum triangular-lattice antiferromagnets are important prototype systems to investigate numerous ...
Using variational wave functions and Monte Carlo techniques, we study the antiferromagnetic Heisenbe...
The magnetism of lamellar copper oxides, which are the parent materials of high temperature supercon...
CNPqIn view of quite recent experimental activities on magnetic and superconducting properties of ho...
We study the ground-state phase diagrams and properties of spin-1/2 Heisenberg models on the diamond...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2008.Includes bibliographica...
In this thesis we apply recently developed, as well as sophisticated quantum Monte Carlo methods to ...
We study numerically a bosonic analog of the Kitaev honeycomb model, which is a minimal model for $4...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use series expansion methods to study ground- and excited-state properties in the helically order...
We present a spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in th...
We investigate the structural and magnetic properties of two molecule-based magnets synthesized from...
International audienceMotivated by the rich physics of honeycomb magnetic materials, we obtain the p...
We investigate the spin S = 1/2 Heisenberg model on the body centered cubic lattice in the presence ...
We study the ground-state (gs) phase diagram of the frustrated spin-12 J1–J2–J3 antiferromagnet with...
Quantum triangular-lattice antiferromagnets are important prototype systems to investigate numerous ...
Using variational wave functions and Monte Carlo techniques, we study the antiferromagnetic Heisenbe...
The magnetism of lamellar copper oxides, which are the parent materials of high temperature supercon...
CNPqIn view of quite recent experimental activities on magnetic and superconducting properties of ho...
We study the ground-state phase diagrams and properties of spin-1/2 Heisenberg models on the diamond...
Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Physics, 2008.Includes bibliographica...
In this thesis we apply recently developed, as well as sophisticated quantum Monte Carlo methods to ...
We study numerically a bosonic analog of the Kitaev honeycomb model, which is a minimal model for $4...
We use the coupled-cluster method in high orders of approximation to make a comprehensive study of t...
We use series expansion methods to study ground- and excited-state properties in the helically order...
We present a spin-rotation-invariant Green-function theory for the dynamic spin susceptibility in th...
We investigate the structural and magnetic properties of two molecule-based magnets synthesized from...
International audienceMotivated by the rich physics of honeycomb magnetic materials, we obtain the p...