We present a detailed analysis of the band structure of the root 3 x root 3 R 30 degrees BiAg2/Ag/Si(111) trilayer system by means of high resolution Angle Resolved Photoemission Spectroscopy (ARPES). BiAg2/Ag/Si(111) exhibits a complex spin-polarized electronic structure due to giant spin-orbit interactions. We show that a complete set of constant energy ARPES maps, supplemented by a modified nearly free electron calculation, provides a unique insight into the structure of the spin-polarized bands and spin gaps. We also show that the complex gap structure can be continuously tuned in energy by a controlled deposition of an alkali metal
We present Angle-Resolved Photoelectron Spectroscopy (ARPES) data on spin-orbit split states in two ...
Spin-polarized electrons confined in low-dimensional structures are of high interest for spintronics...
We report high-resolution spin-resolved photoemission spectroscopy (spin-ARPES) measurements on the ...
We present a detailed analysis of the band structure of the √3×√3 R 30 ∞ BiAg 2/Ag/Si(111) trilayer ...
We report on the formation of a BiAg2/Ag/Si(1 1 1) trilayer system which exhibits a giant Rashba spi...
The spin features of surface resonance bands in single layer Bi on Ge(1 1 1) are studied by means of...
Spin- and angle-resolved photoelectron spectroscopy is the prime method to investigate spin polarize...
We discuss two different approaches for tuning the giant spin-orbit splitting of a BiAg2 surface all...
In this thesis we study the electronic structure of different two-dimensional (2D) electron systems ...
A giant spin splitting has been observed in surface alloys on noble metal (111) surfaces as a result...
Heavy metal surface alloys represent model systems to study the correlation between electron scatter...
Spin-split energy band structure appears in the surface state due to a broken space inversion symmet...
We present first-principles calculations of a (√3×√3)R30° Bi∕Ag(111)-ordered surface alloy, which ha...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Heavy metal surface alloys r...
We present first-principles calculations of a (root 3x root 3) R30 degrees Bi/Ag (111)-ordered surfa...
We present Angle-Resolved Photoelectron Spectroscopy (ARPES) data on spin-orbit split states in two ...
Spin-polarized electrons confined in low-dimensional structures are of high interest for spintronics...
We report high-resolution spin-resolved photoemission spectroscopy (spin-ARPES) measurements on the ...
We present a detailed analysis of the band structure of the √3×√3 R 30 ∞ BiAg 2/Ag/Si(111) trilayer ...
We report on the formation of a BiAg2/Ag/Si(1 1 1) trilayer system which exhibits a giant Rashba spi...
The spin features of surface resonance bands in single layer Bi on Ge(1 1 1) are studied by means of...
Spin- and angle-resolved photoelectron spectroscopy is the prime method to investigate spin polarize...
We discuss two different approaches for tuning the giant spin-orbit splitting of a BiAg2 surface all...
In this thesis we study the electronic structure of different two-dimensional (2D) electron systems ...
A giant spin splitting has been observed in surface alloys on noble metal (111) surfaces as a result...
Heavy metal surface alloys represent model systems to study the correlation between electron scatter...
Spin-split energy band structure appears in the surface state due to a broken space inversion symmet...
We present first-principles calculations of a (√3×√3)R30° Bi∕Ag(111)-ordered surface alloy, which ha...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Heavy metal surface alloys r...
We present first-principles calculations of a (root 3x root 3) R30 degrees Bi/Ag (111)-ordered surfa...
We present Angle-Resolved Photoelectron Spectroscopy (ARPES) data on spin-orbit split states in two ...
Spin-polarized electrons confined in low-dimensional structures are of high interest for spintronics...
We report high-resolution spin-resolved photoemission spectroscopy (spin-ARPES) measurements on the ...