We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein model, which is paradigmatic for the interplay of electron–electron and electron–phonon interactions. Analyzing the single-particle excitation gap, we find a direct Peierls insulator to Mott insulator phase transition in the adiabatic regime of slow phonons in contrast to a rather large intervening metallic phase in the anti-adiabatic regime of fast phonons. We benchmark the DMET results for both on-site energies and excitation gaps against density-matrix renormalization group (DMRG) results and find good agreement of the resulting phase boundaries. We also compare the full quantum treatment of phonons against the standard Born–Oppenheimer (BO)...
We re-examine the Peierls insulator to Mott insulator transition scenario in the one-dimensional Ho...
We study in detail the solution of a basic strongly correlated model,namely, the dimer Hubbard model...
We introduce density matrix embedding theory (DMET), a quantum embedding theory for computing freque...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
The one-dimensional Holstein model of spinless fermions interacting with dispersionless phonons is s...
The Hubbard-Holstein model is one of the simplest to incorporate both electron-electron and electron...
We present a numerical study of the Hubbard-Holstein model in one dimension at half filling, includi...
We have studied the extended Hubbard and the Peierls-extended Hubbard models in one dimension using...
We have studied the extended Hubbard and the Peierls-extended Hubbard models in one dimension using...
Interplay of strong electron correlation and electron-phonon interaction is one of im-portant issues...
We re-examine the Peierls insulator to Mott insulator transition scenario in the one-dimensional Ho...
We study in detail the solution of a basic strongly correlated model,namely, the dimer Hubbard model...
We introduce density matrix embedding theory (DMET), a quantum embedding theory for computing freque...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We present a density-matrix embedding theory (DMET) study of the one-dimensional Hubbard–Holstein mo...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
We describe the extension of the density matrix embedding theory framework to coupled interacting fe...
The one-dimensional Holstein model of spinless fermions interacting with dispersionless phonons is s...
The Hubbard-Holstein model is one of the simplest to incorporate both electron-electron and electron...
We present a numerical study of the Hubbard-Holstein model in one dimension at half filling, includi...
We have studied the extended Hubbard and the Peierls-extended Hubbard models in one dimension using...
We have studied the extended Hubbard and the Peierls-extended Hubbard models in one dimension using...
Interplay of strong electron correlation and electron-phonon interaction is one of im-portant issues...
We re-examine the Peierls insulator to Mott insulator transition scenario in the one-dimensional Ho...
We study in detail the solution of a basic strongly correlated model,namely, the dimer Hubbard model...
We introduce density matrix embedding theory (DMET), a quantum embedding theory for computing freque...