We illustrate the RF design of the X-band linac for the upgrade of the SPARC_LAB facility at INFN-LNF (EuPRAXIA@SPARC_LAB). The structures are travelling wave (TW) cavities, working on the 2π/3 mode, fed by klystrons with pulse compressor systems. The tapering of the cells along the structure and the cell profiles have been optimized to maximize the effective shunt impedance keeping under control the maximum value of the modified Poynting vector, while the couplers have been designed to have a symmetric feeding and a reduced pulsed heating. In the paper we also present the RF power distribution layout of the accelerating module and a preliminary mechanical design
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
In the framework of the upgrade of the SPARC_LAB facility at INFN-LNF (Frascati, Italy), named EuPRA...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
Linac driven free electron lasers (FELs) are useful devices for studying matter and the demand for n...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
SPARC_LAB is a high-brightness electron photoinjector dedicated to FEL radiation production and rese...
Within the framework of Horizon 2020 project, Compact Light, in order to provide a high performance,...
The Frascati photo-injector SPARC (Pulsed Self Amplified Coherent Radiation Source) will be equipped...
In order to explore physics in the EUV to soft x-ray region, we have designed a machine which is cap...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
In the framework of the upgrade of the SPARC_LAB facility at INFN-LNF (Frascati, Italy), named EuPRA...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
Linac driven free electron lasers (FELs) are useful devices for studying matter and the demand for n...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
SPARC_LAB is a high-brightness electron photoinjector dedicated to FEL radiation production and rese...
Within the framework of Horizon 2020 project, Compact Light, in order to provide a high performance,...
The Frascati photo-injector SPARC (Pulsed Self Amplified Coherent Radiation Source) will be equipped...
In order to explore physics in the EUV to soft x-ray region, we have designed a machine which is cap...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...
At EuPRAXIA@SPARC_LAB, the unique combination of an advanced high-brightness RF injector and a plasm...