November 2023

Journal

Robust charge-density-wave correlations in the electron-doped single-band Hubbard model

By:
Mai, Peizhi; Nichols, Nathan; Karakuzu, Seher; Bao, Feng; Del Maestro, Adrian; Maier, Thomas A; Johnston, Steven
Journal Name:
Nature Communications
Page Number:
2889-2889
Volume:
14
Issue Number:
1
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1038/s41467-023-38566-7

Abstract

There is growing evidence that the hole-doped single-band Hubbard and t − J models do not have a superconducting ground state reflective of the high-temperature cuprate superconductors but instead have striped spin- and charge-ordered ground states. Nevertheless, it is proposed that these models may still provide an effective low-energy model for electron-doped materials. Here we study the finite temperature spin and charge correlations in the electron-doped Hubbard model using quantum Monte Carlo dynamical cluster approximation calculations and contrast their behavior with those found on the hole-doped side of the phase diagram. We find evidence for a charge modulation with both checkerboard and unidirectional components decoupled from any spin-density modulations. These correlations are inconsistent with a weak-coupling description based on Fermi surface nesting, and their doping dependence agrees qualitatively with resonant inelastic x-ray scattering measurements. Our results provide evidence that the single-band Hubbard model describes the electron-doped cuprates.


Related Researchers