We consider the antiferromagnetic Heisenberg model on a distorted diamond chain and use the localized-magnon picture adapted to a distorted geometry to discuss some of its high-field low-temperature properties. More specifically, in our study we assume that the partition function for a slightly distorted geometry has the same form as for ideal geometry, though with slightly dispersive one-magnon energies. We also discuss the relevance of such a description to azurite
We consider the $s=1/2$ transverse field $XY$ model on the frustrated diamond chain, considering ani...
Using the transfer matrix renormalization group (TMRG) method, we study the connection between the f...
The frustrated quantum spin system on the distorted diamond chain lattice is investigated using the ...
Abstract. The natural mineral azurite Cu3(CO3)2(OH)2 is an interesting spin-1/2 quantum antiferromag...
It is evidenced that effective lattice-gas models of hard-core monomers and dimers afford a proper d...
The thermodynamic properties of the spin-1/2 diamond quantum Heisenberg chain model have been invest...
We consider the quantum Heisenberg antiferromagnet in a magnetic field on two one-dimensional lattic...
With the help of the bond operator representation for three S spins, we study the effective Hamilton...
Cu2+ ions in the azurite Cu3(CO3)2(OH)2 form the diamond-chain, which is one of the geometrically fr...
We study the ground-state phase diagrams and properties of spin-1/2 Heisenberg models on the diamond...
Geometrically frustrated spin models with competing interaction parameters and the phase diagram of ...
Azurite is a dark blue mineral Cu3(OH2)(CO3)2 with the monoclinic structure. The discovery of an ant...
5 pages, 2 figures, replaced with accepted versionLow-energy degrees of freedom of a spin-1/2 kagome...
The influence of the nonlinearity of the spin equations of motion on the dynamic structure factor of...
The geometric frustration in a class of the mixed spin-1=2 and spin-S Ising-Heisenberg diamond chain...
We consider the $s=1/2$ transverse field $XY$ model on the frustrated diamond chain, considering ani...
Using the transfer matrix renormalization group (TMRG) method, we study the connection between the f...
The frustrated quantum spin system on the distorted diamond chain lattice is investigated using the ...
Abstract. The natural mineral azurite Cu3(CO3)2(OH)2 is an interesting spin-1/2 quantum antiferromag...
It is evidenced that effective lattice-gas models of hard-core monomers and dimers afford a proper d...
The thermodynamic properties of the spin-1/2 diamond quantum Heisenberg chain model have been invest...
We consider the quantum Heisenberg antiferromagnet in a magnetic field on two one-dimensional lattic...
With the help of the bond operator representation for three S spins, we study the effective Hamilton...
Cu2+ ions in the azurite Cu3(CO3)2(OH)2 form the diamond-chain, which is one of the geometrically fr...
We study the ground-state phase diagrams and properties of spin-1/2 Heisenberg models on the diamond...
Geometrically frustrated spin models with competing interaction parameters and the phase diagram of ...
Azurite is a dark blue mineral Cu3(OH2)(CO3)2 with the monoclinic structure. The discovery of an ant...
5 pages, 2 figures, replaced with accepted versionLow-energy degrees of freedom of a spin-1/2 kagome...
The influence of the nonlinearity of the spin equations of motion on the dynamic structure factor of...
The geometric frustration in a class of the mixed spin-1=2 and spin-S Ising-Heisenberg diamond chain...
We consider the $s=1/2$ transverse field $XY$ model on the frustrated diamond chain, considering ani...
Using the transfer matrix renormalization group (TMRG) method, we study the connection between the f...
The frustrated quantum spin system on the distorted diamond chain lattice is investigated using the ...