arXiv · 1104.5463
Stripes in the two-dimensional t-J model with infinite projected entangled-pair states
Abstract
We simulate the $t$ $J$ model in two dimensions by means of infinite projected entangled-pair states (iPEPS) generalized to arbitrary unit cells, finding results similar to those previously obtained by the density-matrix renormalization group (DMRG) for wide ladders. In particular, we show that states exhibiting stripes, {\it i.e}. a unidirectional modulation of hole-density and antiferromagnetic order with a $π$-phase shift between adjacent stripes, have a lower variational energy than uniform phases predicted by variational and fixed-node Monte Carlo simulations. For a fixed unit-cell size the energy per hole is minimized for a hole density $ρ_l\sim 0.5$ per unit length of a stripe. The superconducting order parameter is maximal around $ρ_l\sim 0.75-0.8$.
Explore related subjects
Keep this discovery
P. Corboz, S. R. White, G. Vidal, M. Troyer. 2011-08-11. Stripes in the two-dimensional t-J model with infinite projected entangled-pair states. https://doi.org/10.1103/physrevb.84.041108
Cite the original work for its findings. Save a collection to share your selection of sources.