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Main Authors: Polat, Gökmen, Jeckelmann, Eric
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.14280
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author Polat, Gökmen
Jeckelmann, Eric
author_facet Polat, Gökmen
Jeckelmann, Eric
contents We investigate the Emery model on several ladder-like lattices including two legs of copper d-orbitals and various numbers of oxygen p-orbitals. Pair binding energy, pair spatial structure, density distribution, and pairing correlation functions are calculated using the density matrix renormalization group (DMRG). We show that a Luther-Emery phase with enhanced pairing correlations can be found for hole doping as well as for electron doping with realistic model parameters. Ladder properties depend sensitively on model parameters, the oxygen p-orbitals taken into account, and boundary conditions. The pair binding energy is a more reliable quantity than correlation functions for studying pairing in ladders. Overall, our results for two-leg Emery ladders support the possibility of superconductivity in the hole-doped 2D model. The issue is rather to determine which of the various ladder structures and model parameters are appropriate to approximate the two-dimensional cuprates.
format Preprint
id arxiv_https___arxiv_org_abs_2410_14280
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Influence of oxygen orbitals and boundary conditions on the pairing behavior in the Emery model for doped ladders
Polat, Gökmen
Jeckelmann, Eric
Strongly Correlated Electrons
Superconductivity
We investigate the Emery model on several ladder-like lattices including two legs of copper d-orbitals and various numbers of oxygen p-orbitals. Pair binding energy, pair spatial structure, density distribution, and pairing correlation functions are calculated using the density matrix renormalization group (DMRG). We show that a Luther-Emery phase with enhanced pairing correlations can be found for hole doping as well as for electron doping with realistic model parameters. Ladder properties depend sensitively on model parameters, the oxygen p-orbitals taken into account, and boundary conditions. The pair binding energy is a more reliable quantity than correlation functions for studying pairing in ladders. Overall, our results for two-leg Emery ladders support the possibility of superconductivity in the hole-doped 2D model. The issue is rather to determine which of the various ladder structures and model parameters are appropriate to approximate the two-dimensional cuprates.
title Influence of oxygen orbitals and boundary conditions on the pairing behavior in the Emery model for doped ladders
topic Strongly Correlated Electrons
Superconductivity
url https://arxiv.org/abs/2410.14280