Ultrashort electron bunches are crucial for an increasing number of applications, however, diagnosing their longitudinal phase space remains a challenge. We propose a new method that harnesses the strong electric fields present in a laser driven plasma wakefield. By transversely displacing driver laser and witness bunch, a streaking field is applied to the bunch. This field maps the time information to a transverse momentum change and, consequently, to a change of transverse position. We illustrate our method with simulations where we achieve a time resolution in the attosecond range
We introduce Frequency-Domain Tomography (FDT) for visualizing sub-ps evolution of light-speed refra...
The phase velocity of the wakefield of a laser wakefield accelerator can, theoretically, be manipula...
Trains of ultrashort electron pulses with THz repetition rate, so-called comblike beams, are assumin...
Ultrashort electron bunches are crucial for an increasing number of applications, however, diagnosin...
Ultrashort electron bunches are crucial for an increasing number of applications, however, diagnosin...
Laser-Plasma Accelerators (LPAs) combine a multitude of unique features, which makes them very attra...
We present single-shot measurements of the longitudinal bunch profile from a laser-wakefield acceler...
A plasma can sustain electric fields orders of magnitude larger than those attainable with the conve...
Similarly to laser or x-ray beams, the interaction of sufficiently intense particle beams with neutr...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
A method of slicing of high-energy electron beams following their interaction with the transverse co...
We propose a novel approach to measure short electron bunch profiles at micrometer level. Low energy...
In laser wakefield acceleration, an ultra-short high-intensity laser pulse excites a plasma wave, wh...
Companion development of ultrafast electron beam diagnostics capable of noninvasively resolving sing...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
We introduce Frequency-Domain Tomography (FDT) for visualizing sub-ps evolution of light-speed refra...
The phase velocity of the wakefield of a laser wakefield accelerator can, theoretically, be manipula...
Trains of ultrashort electron pulses with THz repetition rate, so-called comblike beams, are assumin...
Ultrashort electron bunches are crucial for an increasing number of applications, however, diagnosin...
Ultrashort electron bunches are crucial for an increasing number of applications, however, diagnosin...
Laser-Plasma Accelerators (LPAs) combine a multitude of unique features, which makes them very attra...
We present single-shot measurements of the longitudinal bunch profile from a laser-wakefield acceler...
A plasma can sustain electric fields orders of magnitude larger than those attainable with the conve...
Similarly to laser or x-ray beams, the interaction of sufficiently intense particle beams with neutr...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
A method of slicing of high-energy electron beams following their interaction with the transverse co...
We propose a novel approach to measure short electron bunch profiles at micrometer level. Low energy...
In laser wakefield acceleration, an ultra-short high-intensity laser pulse excites a plasma wave, wh...
Companion development of ultrafast electron beam diagnostics capable of noninvasively resolving sing...
International audienceWe show that electron bunches in the 50-100 keV range can be produced from a l...
We introduce Frequency-Domain Tomography (FDT) for visualizing sub-ps evolution of light-speed refra...
The phase velocity of the wakefield of a laser wakefield accelerator can, theoretically, be manipula...
Trains of ultrashort electron pulses with THz repetition rate, so-called comblike beams, are assumin...