We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors imply that scattering of electrons between bonding and antibonding bands is strong compared to scattering within these bands. As a consequence, the resulting data can be reproduced only by a model which assumes that the electrons are interacting with a bosonic mode that is odd with respect to the layer indices. This odd symmetry is a unique property of the magnetic resonance observed by inelastic neutron scattering
This thesis represents a systematic study of electronic structure of the modulation-free Pb-doped Bi...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
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...
This thesis represents a systematic study of electronic structure of the modulation-free Pb-doped Bi...
Studying the nodal quasiparticles in superconducting cuprates by photoemission with highly improved ...
This thesis represents a systematic study of electronic structure of the modulation-free Pb-doped Bi...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
We demonstrate that recent angle resolved photoemission data in bilayer cuprate superconductors impl...
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...
This thesis represents a systematic study of electronic structure of the modulation-free Pb-doped Bi...
Studying the nodal quasiparticles in superconducting cuprates by photoemission with highly improved ...
This thesis represents a systematic study of electronic structure of the modulation-free Pb-doped Bi...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...
Motivated by neutron scattering data, we develop a model of electrons interacting with a magnetic re...