We demonstrate the use of a photoelectron emission microscope in connection with a retarding field electron energy analyzer for the fast acquisition of two-dimensional momentum resolved photoelectron angular distribution patterns. This opens the possibility to combine spatial, momentum, and energy resolution of photoelectrons within the same instrument. We have applied this to observe the Cu(001) Fermi surface from a selected region of the sample. A well defined bulk Fermi surface is quickly mapped in this way
We have studied the surface state of Cu(l l l) using an ellipsoidal-mirror analyzer which gives two ...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...
We describe the use of an ellipsoidal-mirror analyzer to obtain cross-sectional images of electrons ...
We have studied the Fermi surface of Cu using an ellipsoidal-mirror analyzer which gives two-dimensi...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
A brief survey of the angle-scanned photoemission technique is given. It incorporates two complement...
The principle of this novel technique of scanning photoemission microscopy (SPM) consists in recordi...
The Fermi surface that characterizes the electronic band structure of crystalline solids can be diff...
Photoemission tomography (PT) is a newly developed method for analyzing angularresolved photoemissio...
Photoemission tomography (PT) is a newly developed method for analyzing angularresolved photoemissio...
[[abstract]]Rie applied element sensitive photoemission electron microscopy (PEEM) to investigate su...
We performed a full mapping of the bulk electronic structure including the Fermi surface and Fermi-v...
We have studied the surface state of Cu(l l l) using an ellipsoidal-mirror analyzer which gives two ...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...
We describe the use of an ellipsoidal-mirror analyzer to obtain cross-sectional images of electrons ...
We have studied the Fermi surface of Cu using an ellipsoidal-mirror analyzer which gives two-dimensi...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
When mapping spatially resolved photoemission intensity for electron kinetic energy corresponding to...
A brief survey of the angle-scanned photoemission technique is given. It incorporates two complement...
The principle of this novel technique of scanning photoemission microscopy (SPM) consists in recordi...
The Fermi surface that characterizes the electronic band structure of crystalline solids can be diff...
Photoemission tomography (PT) is a newly developed method for analyzing angularresolved photoemissio...
Photoemission tomography (PT) is a newly developed method for analyzing angularresolved photoemissio...
[[abstract]]Rie applied element sensitive photoemission electron microscopy (PEEM) to investigate su...
We performed a full mapping of the bulk electronic structure including the Fermi surface and Fermi-v...
We have studied the surface state of Cu(l l l) using an ellipsoidal-mirror analyzer which gives two ...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...
We developed a time-of-fight photoelectron spectrometer that simultaneously analyzes low energy elec...