The phase diagram of a frustrated spin-S zig–zag ladder is studied through different numerical and analytical methods. We show that for arbitrary S, there is a family of Hamiltonians for which a fully-dimerized state is an exact ground state, being the Majumdar–Ghosh point for a particular member of the family. We show that the system presents a transition between a dimerized phase to a Néel-like phase for S = 1/2, and spiral phases can appear for large S. The phase diagram is characterized by means of a generalization of the usual mean field approximation. The novelty in the present implementation is to consider the strongest coupled sites as the unit cell. The gap and the excitation spectrum is analyzed through the random phase approximat...
We study the ground-state magnetic phase diagram of a spin S = 1∕2 antiferromagnetic two-leg ladder ...
© 2011 American Physical SocietyDimerized antiferromagnetic spin-1 ladders are known to exhibit a qu...
We explore the ground-state phase diagram of the S = 1/2 two-leg ladder. The isotropic leg interacti...
The phase diagram of a frustrated spin-S zig-zag ladder is studied through different numerical and a...
The ground-state magnetic phase diagram of a spin S=1/2 two-leg ladder with alternating rung exchang...
The columnar dimerized antiferromagnetic S = 1/2 spin ladder is numerically studied by the...
ABSTRACT. The ground-state phase diagram of a two-leg spin ladder with alternating rung exchange 00)...
We study a family of frustrated antiferromagnetic spin-S systems with a fully dimerized ground state...
In this paper, we study the phase diagram of a frustrated spin ladder model by applying the bosoniza...
The magnetic phase diagram of a plaquette dimerized and frustrated antiferromagnetic ladder system i...
Using the density-matrix renormalization-group technique, we study the ground-state phase diagram an...
We analyze the phase diagram of a system of spin-1/2 Heisenberg antiferromagnetic chains interacting...
This paper studies a spin ladder model which possesses frustrating interactions. By using both the b...
By the density matrix renormalization group method, the phase diagram of the frustrated spin-1/2 lad...
Using the density-matrix renormalization-group technique, we study the ground-state phase diagram an...
We study the ground-state magnetic phase diagram of a spin S = 1∕2 antiferromagnetic two-leg ladder ...
© 2011 American Physical SocietyDimerized antiferromagnetic spin-1 ladders are known to exhibit a qu...
We explore the ground-state phase diagram of the S = 1/2 two-leg ladder. The isotropic leg interacti...
The phase diagram of a frustrated spin-S zig-zag ladder is studied through different numerical and a...
The ground-state magnetic phase diagram of a spin S=1/2 two-leg ladder with alternating rung exchang...
The columnar dimerized antiferromagnetic S = 1/2 spin ladder is numerically studied by the...
ABSTRACT. The ground-state phase diagram of a two-leg spin ladder with alternating rung exchange 00)...
We study a family of frustrated antiferromagnetic spin-S systems with a fully dimerized ground state...
In this paper, we study the phase diagram of a frustrated spin ladder model by applying the bosoniza...
The magnetic phase diagram of a plaquette dimerized and frustrated antiferromagnetic ladder system i...
Using the density-matrix renormalization-group technique, we study the ground-state phase diagram an...
We analyze the phase diagram of a system of spin-1/2 Heisenberg antiferromagnetic chains interacting...
This paper studies a spin ladder model which possesses frustrating interactions. By using both the b...
By the density matrix renormalization group method, the phase diagram of the frustrated spin-1/2 lad...
Using the density-matrix renormalization-group technique, we study the ground-state phase diagram an...
We study the ground-state magnetic phase diagram of a spin S = 1∕2 antiferromagnetic two-leg ladder ...
© 2011 American Physical SocietyDimerized antiferromagnetic spin-1 ladders are known to exhibit a qu...
We explore the ground-state phase diagram of the S = 1/2 two-leg ladder. The isotropic leg interacti...