Spin and charge fluctuations in the two-band Hubbard model
arXiv:2001.09270 · doi:10.1140/epjb/e2020-10221-4
Abstract
A model of CuO planes of cuprate perovskites, containing copper orbitals and symmetric combinations of oxygen orbitals, is investigated using the strong coupling diagram technique. This approach allows one to take into account the interactions of carriers with spin and charge fluctuations of all ranges. Derived equations for Green's function are self-consistently solved for the set of parameters corresponding to hole- and electron-doped cuprates. It is shown that the mentioned interactions lead to the appearance of spin polarons -- bound states of carriers with spin excitations, which show themselves as sharp peaks of the density of states and spectral functions at the Fermi level. Hole and electron doping are strongly asymmetric. This, in particular, manifests itself in the antiferromagnetic response for the electron-doped case and in an incommensurate magnetic ordering for hole doping. In the latter case, the incommensurability parameter grows with doping. The double occupancy shows that the electron-doped system retains strong correlations up to the concentration 0.23, while for hole doping the correlations decay rapidly. These results are in agreement with experimental observations in cuprates.
12 pages, 8 figures
References in corpus (12)
- Antiferromagnetism and the gap of a Mott insulator: Results from analytic continuation of the self-energy
- Physics of cuprates with the two-band Hubbard model - The validity of the one-band Hubbard model
- Hundness versus Mottness in a three-band Hubbard-Hund model: On the origin of strong correlations in Hund metals
- Correlation Strength, Gaps and Particle-Hole Asymmetry in High-Tc Cuprates: a Dynamical Mean Field Study of the Three-Band Copper-Oxide Model
- High Energy Spin Excitations in Electron-Doped Superconducting PrLaCeCuO with K
- Phase diagram and single-particle spectrum of CuO layers within a variational cluster approach to the 3-band Hubbard model
- Underdoped cuprates phenomenology in the 2D Hubbard model within COM(SCBA)
- Role of oxygen-oxygen hopping in the three-band copper-oxide model: quasiparticle weight, metal insulator and magnetic phase boundaries, gap values and optical conductivity
- Dual Features of Magnetic Susceptibility in Superconducting Cuprates: a comparison to inelastic neutron scattering
- Magnetic properties and temperature variation of spectra in the Hubbard model
- The --- Hubbard model and Fermi-level peak
- Negative electron compressibility in the Hubbard Model