Formation of clusters in the ground state of the t-J model on a two leg ladder

Abstract

We investigate the ground state properties of the t-J model on a two leg ladder with anisotropic couplings (t,α=J/t) along rungs and (t',α'=J'/t') along legs. We have implemented a cluster approach based on 4-site plaqettes. In the strong asymmetric cases α/α' 1 and α'/α 1 the ground state energy is well described by plaquette clusters with charges Q=2,4. The interaction between the clusters favours the condensation of plaquettes with maximal charge -- a signal for phase separation. The dominance of Q=2 plaquettes explains the emergence of tightly bound hole pairs. We have presented the numerical results of exact diagonalization to support our cluster approach.

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