Hard X-ray PhotoEmission Spectroscopy (HAXPES) is a new tool for the study of bulk electronic properties of solids using synchrotron radiation. We review recent achievements of HAXPES, with particular reference to the VOLPE project, showing that high energy resolution and bulk sensitivity can be obtained at kinetic energies of 6-8 keV. We present also the results of recent studies on strongly correlated materials, such as vanadium sesquioxide and bilayered manganites, revealing the presence of different screening properties in the bulk with respect to the surface. We discuss the relevant experimental features of the metal-insulator transition in these materials
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard X-ray PhotoEmission Spectroscopy (HAXPES) is a new tool for the study of bulk electronic proper...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
Designing, understanding and controlling the properties of engineered and functional materials, base...
Designing, understanding and controlling the properties of engineered and functional materials, base...
Designing, understanding and controlling the properties of engineered and functional materials, base...
The electronic properties of surfaces and buried interfaces can vary considerably in comparison to t...
The electronic properties of surfaces and buried interfaces can vary considerably in comparison to t...
Electronic properties of complex bulk materials, which often exhibit a modified surface electronic s...
Hard X-ray photoelectron spectroscopy (HAXPES) is a powerful novel emerging technique for bulk compo...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard X-ray PhotoEmission Spectroscopy (HAXPES) is a new tool for the study of bulk electronic proper...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
We report on the results obtained during the commissioning phase of the volume photoemission (VOLPE)...
Designing, understanding and controlling the properties of engineered and functional materials, base...
Designing, understanding and controlling the properties of engineered and functional materials, base...
Designing, understanding and controlling the properties of engineered and functional materials, base...
The electronic properties of surfaces and buried interfaces can vary considerably in comparison to t...
The electronic properties of surfaces and buried interfaces can vary considerably in comparison to t...
Electronic properties of complex bulk materials, which often exhibit a modified surface electronic s...
Hard X-ray photoelectron spectroscopy (HAXPES) is a powerful novel emerging technique for bulk compo...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...
Hard x-ray photoelectron spectroscopy (HAXPES) is establishing itself as an essential technique for ...