We performed angle-resolved photoemission studies on Cu(111) and Au(111) surface states with circularly polarized light to investigate local orbital angular momentum (OAM) structures. Existence of OAM is confirmed, as predicted, to exist in systems with an inversion symmetry breaking. Cu(111) surface state bands are found to have chiral OAM in spite of very small spin-orbit coupling, consistent with the theoretical prediction. As for Au(111), we observe split bands for which OAM for the inner and outer bands are parallel, unlike the Bi2Se3 case. We also performed first-principles calculations and the results are found to be consistent with experimental results. Moreover, the majority of OAM is found to have d-orbital origin while a small co...
The electronic structure of Au(111) films is studied by means of relativistic DFT calculations. It i...
A new spin- and angle-resolved inverse photoemission setup with a low-energy electron source is pres...
Tamura E, Feder R, Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from Ag(111): T...
We performed angle-resolved photoemission studies on Cu(111) and Au(111) surface states with circula...
We performed angle-resolved photoemission (ARPES) experiments with circularly polarized light and fi...
The C2v symmetry of the W(110) surface influences strongly the spin-polarized Dirac-cone-like surfac...
We compare the electronic structure of the unreconstructed Au(111) surface calculated within densit...
We present Angle-Resolved Photoelectron Spectroscopy (ARPES) data on spin-orbit split states in two ...
We present angle-resolved photoemission data from Cu(111). Using a focused 6 eV continuous-wave lase...
We report on the measurement of the Rashba-type spin splitting of the Shockley surface state on Cu(1...
We present a combined experimental and theoretical study of spin–orbit-induced spin splittings in th...
The paper sums up a theoretical and experimental investigation of the influence of the spin orbit co...
AbstractWe present a spin resolving “momentum microscope” for the high resolution imaging of the mom...
We explore by theory and experiment the effects of spin–orbit coupling (SOC) on the pair creation of...
We find in the case of W 110 previously overlooked anomalous surface states having their spin locke...
The electronic structure of Au(111) films is studied by means of relativistic DFT calculations. It i...
A new spin- and angle-resolved inverse photoemission setup with a low-energy electron source is pres...
Tamura E, Feder R, Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from Ag(111): T...
We performed angle-resolved photoemission studies on Cu(111) and Au(111) surface states with circula...
We performed angle-resolved photoemission (ARPES) experiments with circularly polarized light and fi...
The C2v symmetry of the W(110) surface influences strongly the spin-polarized Dirac-cone-like surfac...
We compare the electronic structure of the unreconstructed Au(111) surface calculated within densit...
We present Angle-Resolved Photoelectron Spectroscopy (ARPES) data on spin-orbit split states in two ...
We present angle-resolved photoemission data from Cu(111). Using a focused 6 eV continuous-wave lase...
We report on the measurement of the Rashba-type spin splitting of the Shockley surface state on Cu(1...
We present a combined experimental and theoretical study of spin–orbit-induced spin splittings in th...
The paper sums up a theoretical and experimental investigation of the influence of the spin orbit co...
AbstractWe present a spin resolving “momentum microscope” for the high resolution imaging of the mom...
We explore by theory and experiment the effects of spin–orbit coupling (SOC) on the pair creation of...
We find in the case of W 110 previously overlooked anomalous surface states having their spin locke...
The electronic structure of Au(111) films is studied by means of relativistic DFT calculations. It i...
A new spin- and angle-resolved inverse photoemission setup with a low-energy electron source is pres...
Tamura E, Feder R, Vogt B, Schmiedeskamp B, Heinzmann U. Spin-resolved photoemission from Ag(111): T...