In the framework of the upgrade of the SPARC_LAB facility at INFN-LNF (Frascati, Italy), named EuPRAXIA@SPARC_LAB, a high gradient linac is foreseen. One of the most suitable options is to realize it in X-band. A preliminary design study of both accelerating structures and power distribution system has been performed. It is based on 0.5 m long traveling wave (TW) accelerating structures operating in the 2π∕3 mode and fed by klystrons and pulse compressor systems. The main parameters of the structures and linac are presented with the basic RF linac layout.In the framework of the upgrade of the SPARC_LAB facility at INFN-LNF, named EuPRAXIA@SPARC_LAB, a high gradient linac is foreseen. One of the most suitable options is to realize it in X-ba...
The next generation of accelerators, from the compact to the large infrastructure dedicated to high ...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
There is growing demand from the industrial and research communities for high gradient, compact RF a...
We illustrate the RF design of the X-band linac for the upgrade of the SPARC_LAB facility at INFN-LN...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
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...
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 next generation of accelerators, from the compact to the large infrastructure dedicated to high ...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
There is growing demand from the industrial and research communities for high gradient, compact RF a...
We illustrate the RF design of the X-band linac for the upgrade of the SPARC_LAB facility at INFN-LN...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
In the framework of the Eupraxia Design Study an advanced accelerator facility EUPRAXIA@SPARC_LAB ha...
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...
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 next generation of accelerators, from the compact to the large infrastructure dedicated to high ...
The paper presents the design of an X-band accelerating section for linearizing the longitudinal pha...
There is growing demand from the industrial and research communities for high gradient, compact RF a...