R&D activity on Cu photocathodes is under development at the SPARC_LAB test facility to fully characterize each stage of the photocathode “life” and to have a complete overview of the photoemission properties in high brightness photo-injectors. The nano(n)-machining process presented here consists in diamond milling, and blowing with dry nitrogen. This procedure reduces the roughness of the cathode surface and prevents surface contamination introduced by other techniques, such as polishing with diamond paste or the machining with oil. Both high roughness and surface contamination cause an increase of intrinsic emittance and consequently a reduction of the overall electron beam brightness. To quantify these effects, we have characterized the...
In this paper the measurements of current, emittance and brightness of the electron beams photoextra...
Copper (Cu) thin films were deposited on yttrium (Y) substrate by sputtering. During the deposition,...
In this paper we discuss a new technique to image the surfaces of metallic substrates using field ...
R&D activity on Cu photocathodes is under development at the SPARC_LAB test facility to fully charac...
With progress of photoinjector technology, thermal emittance has become the primary limitation of el...
In this work we study the emittance of electron beams generated by three photocathodes (PCs), one ba...
The photoinjector of the CLARA FEL test facility Front End at Daresbury Laboratory is based on a S-b...
In this work the preparation of metal photocathodes by physical vapour deposition magnetron sputteri...
In this work, the geometric and electromagnetic characteristics of electron beams generated by three...
The performance of a fourth generation light source is to a greater extent reliant on the properties...
The performance expected from the next generation of electron accelerators is driving research into ...
Alkali antimonide photocathodes are capable of generating high brightness electron beams given their...
Significant progress has been made in both improving the quantum efficiency and understanding the ph...
Field emission dark current is a most serious problem for a long lifetime operation of a photocathod...
The performance of free electron laser x-ray light sources, and systems for ultrafast electron diffr...
In this paper the measurements of current, emittance and brightness of the electron beams photoextra...
Copper (Cu) thin films were deposited on yttrium (Y) substrate by sputtering. During the deposition,...
In this paper we discuss a new technique to image the surfaces of metallic substrates using field ...
R&D activity on Cu photocathodes is under development at the SPARC_LAB test facility to fully charac...
With progress of photoinjector technology, thermal emittance has become the primary limitation of el...
In this work we study the emittance of electron beams generated by three photocathodes (PCs), one ba...
The photoinjector of the CLARA FEL test facility Front End at Daresbury Laboratory is based on a S-b...
In this work the preparation of metal photocathodes by physical vapour deposition magnetron sputteri...
In this work, the geometric and electromagnetic characteristics of electron beams generated by three...
The performance of a fourth generation light source is to a greater extent reliant on the properties...
The performance expected from the next generation of electron accelerators is driving research into ...
Alkali antimonide photocathodes are capable of generating high brightness electron beams given their...
Significant progress has been made in both improving the quantum efficiency and understanding the ph...
Field emission dark current is a most serious problem for a long lifetime operation of a photocathod...
The performance of free electron laser x-ray light sources, and systems for ultrafast electron diffr...
In this paper the measurements of current, emittance and brightness of the electron beams photoextra...
Copper (Cu) thin films were deposited on yttrium (Y) substrate by sputtering. During the deposition,...
In this paper we discuss a new technique to image the surfaces of metallic substrates using field ...