We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields a small spectral weight of the resonance, in agreement with experiment. We show that the small weight is related to its concentration in a small region of momentum and energy. Despite this, we find that a large fermionic self-energy can indeed be generated by a resonance with such properties, i.e., the scattering from the resonance substantially affects the electronic properties of the cuprates below Tc
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...
We discuss the magnetic excitations of well-ordered stripe and checkerboard phases, including the hi...
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We present estimates in the Hubbard and Heisenberg models for the spectral weight in magnetic neutro...
We present estimates in the Hubbard and Heisenberg models for the spectral weight in magnetic neutro...
We report inelastic neutron scattering experiments on the doping dependence of the energy and spectr...
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...
We discuss the magnetic excitations of well-ordered stripe and checkerboard phases, including the hi...
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We argue that the exciton scenario for the magnetic resonance in the cuprate superconductors yields ...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We explain recent experimental results on the superconducting state spectral function as obtained by...
We present estimates in the Hubbard and Heisenberg models for the spectral weight in magnetic neutro...
We present estimates in the Hubbard and Heisenberg models for the spectral weight in magnetic neutro...
We report inelastic neutron scattering experiments on the doping dependence of the energy and spectr...
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...
We discuss the magnetic excitations of well-ordered stripe and checkerboard phases, including the hi...
Assuming the exchange of antiferromagnetic spin fluctuations as the Cooper pairing mechanism we calc...