Most spectroscopic methods for studying the electronic structure of metal surfaces have the disadvantage that either only occupied or only unoccupied states can be probed, and the signal is cut at the Fermi edge. This leads to significant uncertainties, when states are very close to the Fermi level. By performing low-temperature scanning tunneling spectroscopy and ab initio calculations, we study the surface electronic structures of La(0001) and Lu(0001), and demonstrate that in this way detailed information on the surface electronic structure very close to the Fermi energy can be derived with high accuracy
Scanning tunneling spectroscopy is used to study the local electronic structure of Fe(001) whiskers....
We present the result of a combined ab initio theoretical study and ultraviolet photoemission spectr...
International audience‘Lander molecules’ adsorbed on Ag, Cu and Au(1 1 1)-surfaces are investigated ...
The electronic structure of Al1-xInxNd(10 (1) over bar0) surfaces is investigated by cross-sectional...
In this work the density of states close to the Fermi level EF of the Fe(001)-p(1x1)O surface is inv...
We studied the electronic band structure and corresponding local density of states of low-index fcc ...
The optical, electrical, and chemical properties of semiconductor surfaces are largely determined by...
The electronic structure of Al1−xInxN(101⎯⎯0) surfaces is investigated by cross-sectional scanning t...
The electronic structure of the Zn(0001) surface is analyzed through a realistic slab calculation wi...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
The surface states of 3d transition metals are studied by scanning tunneling microscopy and scanning...
International audienceAngular-dependent de Haas-van Alphen measurements allow to map Fermi surfaces ...
The electronic structures of the iron-based superconductors have been intensively studied by using a...
Recent experimental work has reached an accurate determination of surface-state linewidth by scannin...
AbstractThe series of compounds LaTSb2 (T=Cu,Ag,Au) show various electronic properties. In this pape...
Scanning tunneling spectroscopy is used to study the local electronic structure of Fe(001) whiskers....
We present the result of a combined ab initio theoretical study and ultraviolet photoemission spectr...
International audience‘Lander molecules’ adsorbed on Ag, Cu and Au(1 1 1)-surfaces are investigated ...
The electronic structure of Al1-xInxNd(10 (1) over bar0) surfaces is investigated by cross-sectional...
In this work the density of states close to the Fermi level EF of the Fe(001)-p(1x1)O surface is inv...
We studied the electronic band structure and corresponding local density of states of low-index fcc ...
The optical, electrical, and chemical properties of semiconductor surfaces are largely determined by...
The electronic structure of Al1−xInxN(101⎯⎯0) surfaces is investigated by cross-sectional scanning t...
The electronic structure of the Zn(0001) surface is analyzed through a realistic slab calculation wi...
Electronic states of adsorbates and insulating overlayers provide a wealth of scientifically interes...
The surface states of 3d transition metals are studied by scanning tunneling microscopy and scanning...
International audienceAngular-dependent de Haas-van Alphen measurements allow to map Fermi surfaces ...
The electronic structures of the iron-based superconductors have been intensively studied by using a...
Recent experimental work has reached an accurate determination of surface-state linewidth by scannin...
AbstractThe series of compounds LaTSb2 (T=Cu,Ag,Au) show various electronic properties. In this pape...
Scanning tunneling spectroscopy is used to study the local electronic structure of Fe(001) whiskers....
We present the result of a combined ab initio theoretical study and ultraviolet photoemission spectr...
International audience‘Lander molecules’ adsorbed on Ag, Cu and Au(1 1 1)-surfaces are investigated ...