The photoemission cross-section of Shockley states of Cu(111) and Ag(111) surfaces is studied over a wide range of photon energies. The constant initial-state spectra are very different for the two surfaces and show rich structure that does not follow the generally accepted nearly free electron model for the final state. Angle resolved photoemission data are interpreted within a one-step ab initio theory, revealing a multiple Bloch wave structure of photoemission final states. The inelastic scattering parameter-optical potential-is determined, and the energy dependence of the mean free path of the outgoing electron is calculated, which turns out to be the key for the understanding of the photoemission cross-section curve. These are essentia...
A number of different metal layer structures have been examined using angle-resolved photoemission a...
Electron distributions produced by grazing impact of fast protons on Mg(0001), Cu(111), Ag(111), and...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
The photoemission cross-section of Shockley states of Cu(111) and Ag(111) surfaces is studied over a...
The Cu(111) Shockley surface state has been widely measured by photoemission spectroscopy as a proto...
The quantum efficiency (QE) of Cu(111) is measured for different impinging light angles with photon ...
The Cu(111) surface state has been mapped for vicinal surfaces with variable step densities by angle...
176 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Angle-resolved photoemission ...
176 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Angle-resolved photoemission ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We investigate the evolution...
Tamura E, Feder R, Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from Ag(111): T...
I nverse photoemission spectroscopy is one of the advanced surface science technique for measuri...
Angle-resolved photoemission probes sample initial and final states involved in direct transitions ...
A number of different metal layer structures have been examined using angle-resolved photoemission a...
Light interacting with high-electron-density materials elicits an ultrafast coherent many-body scree...
A number of different metal layer structures have been examined using angle-resolved photoemission a...
Electron distributions produced by grazing impact of fast protons on Mg(0001), Cu(111), Ag(111), and...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...
The photoemission cross-section of Shockley states of Cu(111) and Ag(111) surfaces is studied over a...
The Cu(111) Shockley surface state has been widely measured by photoemission spectroscopy as a proto...
The quantum efficiency (QE) of Cu(111) is measured for different impinging light angles with photon ...
The Cu(111) surface state has been mapped for vicinal surfaces with variable step densities by angle...
176 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Angle-resolved photoemission ...
176 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.Angle-resolved photoemission ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).We investigate the evolution...
Tamura E, Feder R, Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from Ag(111): T...
I nverse photoemission spectroscopy is one of the advanced surface science technique for measuri...
Angle-resolved photoemission probes sample initial and final states involved in direct transitions ...
A number of different metal layer structures have been examined using angle-resolved photoemission a...
Light interacting with high-electron-density materials elicits an ultrafast coherent many-body scree...
A number of different metal layer structures have been examined using angle-resolved photoemission a...
Electron distributions produced by grazing impact of fast protons on Mg(0001), Cu(111), Ag(111), and...
Citation: Ambrosio, M. J., & Thumm, U. (2018). Energy-resolved attosecond interferometric photoemis...