The SINBAD facility(Short and INnovative Bunches and Accelerators at Desy)is foreseen to host various experiments in the field of production of ultra-short electron bunches and novel high gradient acceleration techniques. Besides studying novel acceleration techniques aiming to produce high brightness short electron bunches, the ARD group at DESY is working on the design of a conventional RF accelerator that will allow the production of low charge (0.5pC – fewpC) ultra-short electron bunches (having full width half maximum, FWHM, length r 1 fs – fewfs). The setup will allow the direct experimental comparison of the performance achievable by using different compression techniques (velocity bunching, magnetic compression, hybrid compression s...
A dedicated accelerator research and development facility SINBAD (Short INnovative Bunches and Accel...
We present theoretical and numerical studies of matching sub-femtosecond space-charge-dominated elec...
The field of particle acceleration in plasma wakes has seen remarkable progress in recent years. Acc...
The SINBAD facility(Short and INnovative Bunches and Accelerators at Desy)is foreseen to host variou...
Laser driven Wake-Field Acceleration (LWFA) has proven its capability of accelerating electron bunch...
The SINBAD facility (Short and INnovative Bunches and Accelerators at DESY) is foreseen to provide s...
External injection into laser wakefield accelerators is one of the possible routes towards high ener...
One of the important milestones to make plasma acceleration a realistic technology for user-applicat...
The accelerator R&D facility SINBAD (Short Innovative Bunches and Accelerators at DESY) will drive m...
The SINBAD facility (Short and INnovative Bunches and Accelerators at DESY) is foreseen to provide s...
The SINBAD facility (Short and INnovative Bunches and Accelerators at Desy) is foreseen to host vari...
The SINBAD (Short INnovative Bunches and Accelerators at DESY) project is adedicated, long-term acce...
The SINBAD (Short INnovative Bunches and Accelerators at DESY) project is a dedicated, long-term acc...
We present a status update on the dedicated R&D facility SINBAD which is currently under constructio...
The ARES (Accelerator Research experiment at SINBAD) Linac at SINBAD (Short and INnovative Bunches a...
A dedicated accelerator research and development facility SINBAD (Short INnovative Bunches and Accel...
We present theoretical and numerical studies of matching sub-femtosecond space-charge-dominated elec...
The field of particle acceleration in plasma wakes has seen remarkable progress in recent years. Acc...
The SINBAD facility(Short and INnovative Bunches and Accelerators at Desy)is foreseen to host variou...
Laser driven Wake-Field Acceleration (LWFA) has proven its capability of accelerating electron bunch...
The SINBAD facility (Short and INnovative Bunches and Accelerators at DESY) is foreseen to provide s...
External injection into laser wakefield accelerators is one of the possible routes towards high ener...
One of the important milestones to make plasma acceleration a realistic technology for user-applicat...
The accelerator R&D facility SINBAD (Short Innovative Bunches and Accelerators at DESY) will drive m...
The SINBAD facility (Short and INnovative Bunches and Accelerators at DESY) is foreseen to provide s...
The SINBAD facility (Short and INnovative Bunches and Accelerators at Desy) is foreseen to host vari...
The SINBAD (Short INnovative Bunches and Accelerators at DESY) project is adedicated, long-term acce...
The SINBAD (Short INnovative Bunches and Accelerators at DESY) project is a dedicated, long-term acc...
We present a status update on the dedicated R&D facility SINBAD which is currently under constructio...
The ARES (Accelerator Research experiment at SINBAD) Linac at SINBAD (Short and INnovative Bunches a...
A dedicated accelerator research and development facility SINBAD (Short INnovative Bunches and Accel...
We present theoretical and numerical studies of matching sub-femtosecond space-charge-dominated elec...
The field of particle acceleration in plasma wakes has seen remarkable progress in recent years. Acc...