We present a relativistic spin-fermion model for the cuprates, in which both the charge and spin degrees of freedom are treated dynamically. The spin-charge coupling parameter is associated with the doping fraction. The model is able to account for the various phases of the cuprates and their properties, not only at low and intermediate doping but also for (highly) over-doped compounds. In particular, we acquire a qualitative understanding of high-Tc superconductivity through Bose-Einstein condensation of bound charge pairs. The mechanism that binds these pairs does not require a Fermi sea
Spin-phonon coupling (SPC) has been shown to be compatible with many unusual properties of the high-...
We present a phenomenological model of high-Tc superconductivity in hole-doped cuprates: a Magnetic ...
We explore for all wavevectors through the Brillouin zone the dynamic spin susceptibility χtotal + ,...
We present a relativistic spin-fermion model for the cuprates, in which both the charge and spin deg...
We present a 2+1-dimensional lattice model for the copper oxide superconductors and their parent com...
We study the formation of Cooper pairs in high-Tc cuprate superconductors within a spin uctuation mo...
We study the formation of Cooper pairs in high-Tc cuprate superconductors within a spin uctuation mo...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to a charge...
Starting from a spin-fermion model for the cuprate superconductors, we obtain an effective interacti...
We develop here a tentative explanation of the high-TC superconductivity mechanism, on the basis of ...
The generic band structure of high-TC copper oxides is simulated by the nearly-free-electron model i...
We explore for all wavevectors through the Brillouin zone the dynamic spin susceptibility χtotal + ,...
AbstractA model of high Tc cuprates superconductivity is proposed from the point of view that the el...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to only thr...
The standard theory of metals, Fermi liquid theory, hinges on the key assumption that although the e...
Spin-phonon coupling (SPC) has been shown to be compatible with many unusual properties of the high-...
We present a phenomenological model of high-Tc superconductivity in hole-doped cuprates: a Magnetic ...
We explore for all wavevectors through the Brillouin zone the dynamic spin susceptibility χtotal + ,...
We present a relativistic spin-fermion model for the cuprates, in which both the charge and spin deg...
We present a 2+1-dimensional lattice model for the copper oxide superconductors and their parent com...
We study the formation of Cooper pairs in high-Tc cuprate superconductors within a spin uctuation mo...
We study the formation of Cooper pairs in high-Tc cuprate superconductors within a spin uctuation mo...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to a charge...
Starting from a spin-fermion model for the cuprate superconductors, we obtain an effective interacti...
We develop here a tentative explanation of the high-TC superconductivity mechanism, on the basis of ...
The generic band structure of high-TC copper oxides is simulated by the nearly-free-electron model i...
We explore for all wavevectors through the Brillouin zone the dynamic spin susceptibility χtotal + ,...
AbstractA model of high Tc cuprates superconductivity is proposed from the point of view that the el...
Starting with a minimal model for the CuO2 planes with the on-site Hilbert space reduced to only thr...
The standard theory of metals, Fermi liquid theory, hinges on the key assumption that although the e...
Spin-phonon coupling (SPC) has been shown to be compatible with many unusual properties of the high-...
We present a phenomenological model of high-Tc superconductivity in hole-doped cuprates: a Magnetic ...
We explore for all wavevectors through the Brillouin zone the dynamic spin susceptibility χtotal + ,...