Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techniques for powering future compact light-source and high-energy physics applications. Here, a driving particle bunch excites a wakefield response in a plasma medium, which may rapidly accelerate a trailing witness beam. In this Letter, we present the measurement of ratios of acceleration of the witness bunch to deceleration of the driver bunch, the so-called transformer ratio, significantly exceeding the fundamental theoretical and thus far experimental limit of 2 in a PWFA. An electron bunch with ramped current profile was utilized to accelerate a witness bunch with a transformer ratio of $4.6^{+2.2}_{−0.7}$ in a plasma with length $∼10 cm$, ...
2014-02-03Particle accelerators are the main tool for discovering new elementary particles. Plasma b...
We present a practical method for achieving a transformer ratio (R) greater than 2 with any collinea...
This introductory article is a synopsis of the status and prospects of particle-beam-driven plasma w...
Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techni...
Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techni...
In this work, plasma wakefield acceleration with high transformer ratios, i.e. highratios between ac...
In Plasma Wakefield Acceleration (PWFA) plasma oscillations are driven by ultra relativistic electro...
The transformer ratio, the ratio between maximum accelerating field and maximum decelerating field i...
In the field of plasma wakefield acceleration (PWFA) sig-nificant progress has been made throughout ...
We demonstrate the first single shot measurement of a multi-period, loaded PWFA wakefield, used to c...
This paper focus on the response of the transformer ratio (R) and energy gain by the wakefield to ch...
One approach to future high energy particle accelerators is based on the wakefield principle: a lead...
Plasma-based acceleration has already proved the ability to reach ultra-high accelerating gradients....
The transformer ratio is defined as the ratio of the maximum energy gain of the witness bunch to the...
International audienceHigh gradients of energy gain and high energy efficiency are necessary paramet...
2014-02-03Particle accelerators are the main tool for discovering new elementary particles. Plasma b...
We present a practical method for achieving a transformer ratio (R) greater than 2 with any collinea...
This introductory article is a synopsis of the status and prospects of particle-beam-driven plasma w...
Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techni...
Particle-beam-driven plasma wakefield acceleration (PWFA) enables various novel high-gradient techni...
In this work, plasma wakefield acceleration with high transformer ratios, i.e. highratios between ac...
In Plasma Wakefield Acceleration (PWFA) plasma oscillations are driven by ultra relativistic electro...
The transformer ratio, the ratio between maximum accelerating field and maximum decelerating field i...
In the field of plasma wakefield acceleration (PWFA) sig-nificant progress has been made throughout ...
We demonstrate the first single shot measurement of a multi-period, loaded PWFA wakefield, used to c...
This paper focus on the response of the transformer ratio (R) and energy gain by the wakefield to ch...
One approach to future high energy particle accelerators is based on the wakefield principle: a lead...
Plasma-based acceleration has already proved the ability to reach ultra-high accelerating gradients....
The transformer ratio is defined as the ratio of the maximum energy gain of the witness bunch to the...
International audienceHigh gradients of energy gain and high energy efficiency are necessary paramet...
2014-02-03Particle accelerators are the main tool for discovering new elementary particles. Plasma b...
We present a practical method for achieving a transformer ratio (R) greater than 2 with any collinea...
This introductory article is a synopsis of the status and prospects of particle-beam-driven plasma w...