Laser wakefield acceleration promises the production of high energy electrons from table-top accelerators. External injection of (low energy) electrons into a laser wakefield puts extreme demands on the shortness and timing, i.e. a fraction of a plasma period, typically less than 100 fs. In order to meet these requirements, we have revisited the concept of pulsed DC acceleration. Simulations have shown that this concept can be successful if high voltage pulses (of the order MV) can be switched with picosecond precision. As a fust step towards this goal, a IO kV laser triggered pressurized spark gap was designed and built. One of the limitations on risetime and jitter in high voltage laser triggered spark gaps is the initial breakdown proces...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
We report on the experimental investigation of the photoconductively switched gas-filled spark gap. ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
We report on the experimental investigation of the photoconductively switched gas-filled spark gap. ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
We report on the experimental investigation of the photoconductively switched gas-filled spark gap. ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
Laser wakefield acceleration promises the production of high energy electrons from table-top acceler...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
For the acceleration of ultra high-brightness electron bunches, accelerating gradients of 1—2 GV/m h...
We report on the experimental investigation of the photoconductively switched gas-filled spark gap. ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...
We report on the experimental investigation of the photoconductively switched gas-filled spark gap. ...
We have demonstrated photoconductive switching of a gas-filled spark gap. A femtosecond Ti:sapphire ...