High-resolution measurement of the longitudinal profile of a relativistic electron beam is of utmost importance for linac based free-electron lasers and other advanced accelerator facilities that employ ultrashort bunches. In this paper, we investigate a novel scheme to measure ultrashort bunches (subpicosecond) with exceptional temporal resolution (hundreds of attoseconds) and dynamic range. The scheme employs two orthogonally oriented deflecting sections. The first imparts a short-wavelength (fast temporal resolution) horizontal angular modulation on the beam, while the second imparts a long-wavelength (slow) angular kick in the vertical dimension. Both modulations are observable on a standard downstream screen in the form of a streaked s...
In laser wakefield acceleration, an ultra-short high-intensity laser pulse excites a plasma wave, wh...
There is growing interest in the generation and characterization of femtosecond and subfemtosecond p...
Linear-accelerator-based x-ray sources will revolutionize ultrafast science due to their unprecedent...
With a current trend towards shorter electron beams with lengths on the order of few femtoseconds (f...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
With a current trend towards shorter electron beams with lengths on the order of few femtoseconds (f...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
The measurement of ultrashort longitudinal bunch pro-files is of growing importance to accelerator d...
Ultrashort electron bunches with rms length of {approx} 1 femtosecond (fs) can be used to generate u...
There is growing interest in the generation and characterization of femtosecond and subfemtosecond p...
In this paper we propose a new method for measurements of the longitudinal profile of 100 femtosecon...
The measurement of ultra-short electron bunches on the femtosecond time scale constitutes a very cha...
In this paper we propose a new method for measurements of the longitudinal profile of 100 femtosecon...
We propose a novel approach to measure short electron bunch profiles at micrometer level. Low energy...
Single-pass free electron lasers require high peak currents from ultra-short electron bunches to rea...
In laser wakefield acceleration, an ultra-short high-intensity laser pulse excites a plasma wave, wh...
There is growing interest in the generation and characterization of femtosecond and subfemtosecond p...
Linear-accelerator-based x-ray sources will revolutionize ultrafast science due to their unprecedent...
With a current trend towards shorter electron beams with lengths on the order of few femtoseconds (f...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
With a current trend towards shorter electron beams with lengths on the order of few femtoseconds (f...
With electron beam durations down to femtoseconds and sub-femtoseconds achievable in current state-o...
The measurement of ultrashort longitudinal bunch pro-files is of growing importance to accelerator d...
Ultrashort electron bunches with rms length of {approx} 1 femtosecond (fs) can be used to generate u...
There is growing interest in the generation and characterization of femtosecond and subfemtosecond p...
In this paper we propose a new method for measurements of the longitudinal profile of 100 femtosecon...
The measurement of ultra-short electron bunches on the femtosecond time scale constitutes a very cha...
In this paper we propose a new method for measurements of the longitudinal profile of 100 femtosecon...
We propose a novel approach to measure short electron bunch profiles at micrometer level. Low energy...
Single-pass free electron lasers require high peak currents from ultra-short electron bunches to rea...
In laser wakefield acceleration, an ultra-short high-intensity laser pulse excites a plasma wave, wh...
There is growing interest in the generation and characterization of femtosecond and subfemtosecond p...
Linear-accelerator-based x-ray sources will revolutionize ultrafast science due to their unprecedent...