TY - JOUR
T1 - Angle-resolved photoemission intensities in a cuprate system with bilayer coupling
T2 - Effects of transition matrix elements and photoelectron losses
AU - Lee, J. D.
AU - Fujimori, A.
PY - 2002
Y1 - 2002
N2 - We have studied photoemission in the superconducting cuprate system with (formula presented) bilayer under the assumption that the valence hole is so localized that it looks similar to a core hole. Applying the assumption, one can calculate both intrinsic and extrinsic losses depending on the photon energy and the photohole position. We have found that the two layers suffering from different losses are so coupled that mixed losses may influence the photoemission spectra in accordance with the bonding and antibonding states due to the bilayer splitting. In the study, such a mixing between losses of the two layers is described incorporating the matrix element effects on the simplest level. Further, the photoemission intensity variations for bonding and antibonding symmetries as a function of the incident photon energies are evaluated and discussed.
AB - We have studied photoemission in the superconducting cuprate system with (formula presented) bilayer under the assumption that the valence hole is so localized that it looks similar to a core hole. Applying the assumption, one can calculate both intrinsic and extrinsic losses depending on the photon energy and the photohole position. We have found that the two layers suffering from different losses are so coupled that mixed losses may influence the photoemission spectra in accordance with the bonding and antibonding states due to the bilayer splitting. In the study, such a mixing between losses of the two layers is described incorporating the matrix element effects on the simplest level. Further, the photoemission intensity variations for bonding and antibonding symmetries as a function of the incident photon energies are evaluated and discussed.
UR - https://www.scopus.com/pages/publications/85038269058
U2 - 10.1103/PhysRevB.66.144509
DO - 10.1103/PhysRevB.66.144509
M3 - Article
AN - SCOPUS:85038269058
SN - 1098-0121
VL - 66
SP - 1
EP - 7
JO - Physical Review B - Condensed Matter and Materials Physics
JF - Physical Review B - Condensed Matter and Materials Physics
IS - 14
ER -