The spin 1/2 Heisenberg model on a square lattice with antiferromagnetic nearest- and next-nearest neighbour interactions (the J1–J2 model) has long been studied as a paradigm of a two-dimensional frustrated quantum magnet. Only very recently, however, have the first experimental realisations of such systems been synthesized. The newest material, Pb2VO(PO4)2 seems to have mixed ferro– and antiferromagnetic exchange couplings. In the light of this, we extend the semiclassical treatment of the J1–J2 model to include ferromagnetic interactions, and present an analysis of the finite temperature properties of the model based on the exact diagonalization of 8, 16 and 20 site clusters. We propose that diffuse neutron scattering can be used to reso...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
Motivated by the recent experiment in NiGa2S4, the spin-1 Heisenberg model on a triangular lattice w...
The J1 J2 model on a square lattice exhibits a rich variety of different forms of magnetic order tha...
We present results from our analysis of the finite-temperature properties of the spin View the MathM...
We present extensive Monte Carlo simulations for a classical antiferromagnetic Heisenberg model with...
Richter J, Schnack J. Magnetism of the S=21 J1-J2 square-kagome lattice antiferromagnet. Physical R...
A finite temperature perturbation theory for the Heisenberg model of ferromagnetism is pr...
The frustrated spin-l/2 Heisenberg model is studied on finite clusters of sizes up to 32 sites using...
We investigate the ground-state magnetic order of the spin-12 J1-J2 Heisenberg model on the square l...
We use the newly developed finite temperature Lanczos algorithm to calculate the finite temperature ...
We study the zero-temperature phase diagram and the low-energy excitations of a mixed-spin (S-1>S-2)...
We develop a finite-temperature perturbation theory for quasi-one-dimensional quantum spin systems, ...
The J1-J2 model on a square lattice exhibits a rich variety of different forms of magnetic order th...
We study the zero-temperature phase diagram and the low-energy excitations of a mixed-spin (S-1>S-2)...
We employ a recently developed variant of the functional renormalization group method for spin syste...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
Motivated by the recent experiment in NiGa2S4, the spin-1 Heisenberg model on a triangular lattice w...
The J1 J2 model on a square lattice exhibits a rich variety of different forms of magnetic order tha...
We present results from our analysis of the finite-temperature properties of the spin View the MathM...
We present extensive Monte Carlo simulations for a classical antiferromagnetic Heisenberg model with...
Richter J, Schnack J. Magnetism of the S=21 J1-J2 square-kagome lattice antiferromagnet. Physical R...
A finite temperature perturbation theory for the Heisenberg model of ferromagnetism is pr...
The frustrated spin-l/2 Heisenberg model is studied on finite clusters of sizes up to 32 sites using...
We investigate the ground-state magnetic order of the spin-12 J1-J2 Heisenberg model on the square l...
We use the newly developed finite temperature Lanczos algorithm to calculate the finite temperature ...
We study the zero-temperature phase diagram and the low-energy excitations of a mixed-spin (S-1>S-2)...
We develop a finite-temperature perturbation theory for quasi-one-dimensional quantum spin systems, ...
The J1-J2 model on a square lattice exhibits a rich variety of different forms of magnetic order th...
We study the zero-temperature phase diagram and the low-energy excitations of a mixed-spin (S-1>S-2)...
We employ a recently developed variant of the functional renormalization group method for spin syste...
The Heisenberg model on a triangular lattice is a prime example for a geometrically frustrated spin ...
Motivated by the recent experiment in NiGa2S4, the spin-1 Heisenberg model on a triangular lattice w...
The J1 J2 model on a square lattice exhibits a rich variety of different forms of magnetic order tha...