Peak current represents a key demand for new generation electron beam photoinjectors. Many beam applications, such as free electron laser, inverse Compton scattering, terahertz radiation generation, have efficiencies strongly dependent on the bunch length and current. A method of beam longitudinal compression (called velocity bunching) has been proposed some years ago, based on beam longitudinal phase space rotation in a rf field potential. The control of such rotation can lead to a compression factor in excess of 10, depending on the initial longitudinal emittance. Code simulations have shown the possibility to fully compensate the transverse emittance growth during rf compression, and this regime has been experimentally proven recently at...
Neutralized drift compression offers an effective means for particle beam pulse compression and curr...
Bunch length magnetic compression is used in high-brightness linacs driving free-electron lasers (FE...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam appl...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
The optimization of the beam brightness is one of the main goals of the research and development eff...
The production of ultrashort electron bunches represents a fundamental process for the realization o...
Ultra-short electron bunch production is attractive for a large number of applications ranging from ...
Minimizing the dilution of the electron beam emittance is crucial for the performance of accelerator...
Abstract. We describe here a new method to increase the peak current of high brightness electron bea...
A new method based on a rectilinear compressor scheme, utilizing the bunching properties of slow RF ...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Neutralized drift compression offers an effective means for particle beam pulse compression and curr...
Bunch length magnetic compression is used in high-brightness linacs driving free-electron lasers (FE...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam appl...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
Peak current represents a key demand for new generation electron beam photoinjectors. Many beam app...
The optimization of the beam brightness is one of the main goals of the research and development eff...
The production of ultrashort electron bunches represents a fundamental process for the realization o...
Ultra-short electron bunch production is attractive for a large number of applications ranging from ...
Minimizing the dilution of the electron beam emittance is crucial for the performance of accelerator...
Abstract. We describe here a new method to increase the peak current of high brightness electron bea...
A new method based on a rectilinear compressor scheme, utilizing the bunching properties of slow RF ...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...
Neutralized drift compression offers an effective means for particle beam pulse compression and curr...
Bunch length magnetic compression is used in high-brightness linacs driving free-electron lasers (FE...
Accelerator applications like free-electron lasers, time-resolved electron diffraction, and advanced...