We are building an S-band photocathode rf gun as an injector to a 30 MeV electron linac for FEL applications. Here we discuss details of design simulations performed using superfish and gdfidl and compare with results of cold tests performed on prototype cells of the photocathode rf gun. We also discuss beam dynamics simulations performed using parmela and report results from simulations to achieve a normalized transverse rms emittance of about 1π mm mrad for a 10 ps pulse with 1 nC charge in the presence of a solenoid magnetic field used for emittance compensation
The DUVFEL photoinjector consists of a 1.6 cell BNL gun IV with copper cathode, variable pulse lengt...
A new iron dominated single emittance compensation solenoidal magnet was designed to be integrated w...
We describe the analysis and preliminary design of a high-gradient, high-duty factor RF photocathode...
We present a beam dynamics simulation study on W-Band photocathode RF gun which is capable of genera...
We present a beam dynamics simulation study on W-Band photocathode RF gun which is capable of genera...
To realize the requirement of SASE FEL on electron beam, the design of photocathode RF gun was optim...
A dedicated low energy (2 to 10 MeV) experimental beam line is now under construction at Brookhaven ...
A dedicated low energy (2 to 10 MeV) experimental beam line is now under construction at Brookhaven ...
A Brookhaven National Laboratory (BNL) GUN-IV type photocathode rf gun has been fabricated to use in...
The Argonne Wakefield Accelerator has been successfully commissioned and used for conducting wakefie...
The symmetrized 1.6 cell S-band photocathode gun developed by the BNL/SLAC/UCLA collaboration is in ...
The Argonne Wakefield Accelerator has been successfully commissioned and used for conducting wakefie...
To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be...
To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be...
The design and construction of an all copper S-band one-and-half cell photocathode electron gun with...
The DUVFEL photoinjector consists of a 1.6 cell BNL gun IV with copper cathode, variable pulse lengt...
A new iron dominated single emittance compensation solenoidal magnet was designed to be integrated w...
We describe the analysis and preliminary design of a high-gradient, high-duty factor RF photocathode...
We present a beam dynamics simulation study on W-Band photocathode RF gun which is capable of genera...
We present a beam dynamics simulation study on W-Band photocathode RF gun which is capable of genera...
To realize the requirement of SASE FEL on electron beam, the design of photocathode RF gun was optim...
A dedicated low energy (2 to 10 MeV) experimental beam line is now under construction at Brookhaven ...
A dedicated low energy (2 to 10 MeV) experimental beam line is now under construction at Brookhaven ...
A Brookhaven National Laboratory (BNL) GUN-IV type photocathode rf gun has been fabricated to use in...
The Argonne Wakefield Accelerator has been successfully commissioned and used for conducting wakefie...
The symmetrized 1.6 cell S-band photocathode gun developed by the BNL/SLAC/UCLA collaboration is in ...
The Argonne Wakefield Accelerator has been successfully commissioned and used for conducting wakefie...
To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be...
To make full use of the photocathode material and improve its quantum efficiency lifetime, it can be...
The design and construction of an all copper S-band one-and-half cell photocathode electron gun with...
The DUVFEL photoinjector consists of a 1.6 cell BNL gun IV with copper cathode, variable pulse lengt...
A new iron dominated single emittance compensation solenoidal magnet was designed to be integrated w...
We describe the analysis and preliminary design of a high-gradient, high-duty factor RF photocathode...