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, that is, a unidirectional modulation of hole-density and antiferromagnetic order with a p-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 rho(l) similar to 0.5 per unit length of a stripe. The superconducting order parameter is maximal around rh...
Using computational techniques, it is shown that pairing is a robust property of hole-doped antiferr...
We explain how to implement, in the context of projected entangled-pair states (PEPSs), the general ...
Tensor network algorithms have emerged as a new approach in simulating strongly correlated quantum m...
We investigate the two-dimensional t–J model at a hole doping of n¯ h= 1 / 8 using recently develope...
We examine the two-dimensional t−J model by using variational approach combined with well establishe...
Variational studies of the t-J model on the square lattice based on infinite projected-entangled pai...
We study the competition between stripe states with different periods and a uniform d-wave supercond...
We show how to accurately study two-dimensional quantum critical phenomena using infinite projected ...
2noThe infinite projected entangled pair states (iPEPS) technique [J. Jordan et al., Phys. Rev. Lett...
We study second-order finite-temperature phase transitions of the two-dimensional quantum Ising and ...
An infinite projected entangled-pair state (iPEPS) is a variational tensor network ansatz for two-di...
International audienceInfinite projected entangled-pair states (iPEPS) have been introduced to accur...
A typical quantum state obeying the area law for entanglement on an infinite two-dimensional (2D) la...
7siUsing computational techniques, it is shown that pairing is a robust property of hole-doped antif...
4noWe reexamine the important issue of charge fluctuations in the two-dimensional t-J model by using...
Using computational techniques, it is shown that pairing is a robust property of hole-doped antiferr...
We explain how to implement, in the context of projected entangled-pair states (PEPSs), the general ...
Tensor network algorithms have emerged as a new approach in simulating strongly correlated quantum m...
We investigate the two-dimensional t–J model at a hole doping of n¯ h= 1 / 8 using recently develope...
We examine the two-dimensional t−J model by using variational approach combined with well establishe...
Variational studies of the t-J model on the square lattice based on infinite projected-entangled pai...
We study the competition between stripe states with different periods and a uniform d-wave supercond...
We show how to accurately study two-dimensional quantum critical phenomena using infinite projected ...
2noThe infinite projected entangled pair states (iPEPS) technique [J. Jordan et al., Phys. Rev. Lett...
We study second-order finite-temperature phase transitions of the two-dimensional quantum Ising and ...
An infinite projected entangled-pair state (iPEPS) is a variational tensor network ansatz for two-di...
International audienceInfinite projected entangled-pair states (iPEPS) have been introduced to accur...
A typical quantum state obeying the area law for entanglement on an infinite two-dimensional (2D) la...
7siUsing computational techniques, it is shown that pairing is a robust property of hole-doped antif...
4noWe reexamine the important issue of charge fluctuations in the two-dimensional t-J model by using...
Using computational techniques, it is shown that pairing is a robust property of hole-doped antiferr...
We explain how to implement, in the context of projected entangled-pair states (PEPSs), the general ...
Tensor network algorithms have emerged as a new approach in simulating strongly correlated quantum m...