The antiferromagnetic Heisenberg model on the triangular lattice is perhaps the best known example of frustrated magnets, but it orders at low temperatures. Recent density matrix renormalization group (DMRG) calculations find that the next nearest neighbor interaction J(2) enhances the frustration, and it leads to a spin liquid for J(2)/J(1) is an element of (0.08, 0.15). In addition, a DMRG study of a dipolar Heisenberg model with longer range interactions gives evidence for a spin liquid at a small dipole tilting angle theta is an element of [0, 10 degrees). In both cases, the putative spin liquid region appears to be small. Here, we show that for the triangular lattice dipolar Heisenberg model, a robust quantum paramagnetic phase exists ...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
As liquids crystallize into solids on cooling, spins in magnets generally form periodic order. Howev...
We present a detailed functional renormalization group analysis of spin-1/2 dipolar Heisenberg model...
5siWe investigate the spin-1/2 Heisenberg model on the triangular lattice in the presence of nearest...
We study the triangular-lattice Ising model with dipolar interactions, inspired by its realisation i...
Based on exact diagonalization and density matrix renormalization group method, we show that an anis...
In this doctoral dissertation, we investigate two magnetic systems on the triangular lattice. The ge...
We study the S=1/2 Heisenberg model on the triangular lattice with nearest- and next-nearest-neighbo...
We study the S=1/2 Heisenberg model on the triangular lattice with nearest- and next-nearest-neighbo...
We study the quantum phase transition of an S=1/2 anisotropic α (≡Jz/Jxy) Heisenberg antiferromagnet...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present the dynamical spin structure factor of the antiferromagnetic spin-$\frac{1}{2}$ $J_1-J_2$...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
As liquids crystallize into solids on cooling, spins in magnets generally form periodic order. Howev...
We present a detailed functional renormalization group analysis of spin-1/2 dipolar Heisenberg model...
5siWe investigate the spin-1/2 Heisenberg model on the triangular lattice in the presence of nearest...
We study the triangular-lattice Ising model with dipolar interactions, inspired by its realisation i...
Based on exact diagonalization and density matrix renormalization group method, we show that an anis...
In this doctoral dissertation, we investigate two magnetic systems on the triangular lattice. The ge...
We study the S=1/2 Heisenberg model on the triangular lattice with nearest- and next-nearest-neighbo...
We study the S=1/2 Heisenberg model on the triangular lattice with nearest- and next-nearest-neighbo...
We study the quantum phase transition of an S=1/2 anisotropic α (≡Jz/Jxy) Heisenberg antiferromagnet...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present an extensive overview of the phase diagram, spin-wave excitations, and finite-temperature...
We present the dynamical spin structure factor of the antiferromagnetic spin-$\frac{1}{2}$ $J_1-J_2$...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
We investigate the spin S 1 2 Heisenberg model on the body centered cubic lattice in the presence of...
As liquids crystallize into solids on cooling, spins in magnets generally form periodic order. Howev...