Next-generation plasma-based accelerators can push elec-tron bunches to gigaelectronvolt energies within centimetre distances. The plasma, excited by a driver pulse, generates large electric fields that can efficiently accelerate a trailing witness bunch, enabling the realization of laboratory-scale applications ranging from high-energy colliders to ultrabright light sources. So far, several experiments have demonstrated large accelerations but the resulting beam quality, par-ticularly the energy spread, is still far from state-of-the-art conventional accelerators. Here we show the results of a beam-driven plasma acceleration experiment where we used an electron bunch as a driver fo...
High-energy particle accelerators have been crucial in providing a deeper understanding of fundament...
The Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield experiment to exploi...
UnrestrictedParticle accelerators are the tools that physicists use today in order to probe the fund...
Next-generation plasma-based accelerators can push elec-tron bunches to gigaelectronvolt en...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m-1 with generation ...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m$^{−1}$ with genera...
International audienceHigh gradients of energy gain and high energy efficiency are necessary paramet...
Next-generation plasma-based accelerators can push electron beams to GeV energies within centimeter ...
Plasma-wakefield accelerators driven by intense particle beams promise to significantly reduce the s...
Energy-efficient plasma-wakefield acceleration of particle bunches with low energy spread is a promi...
International audienceAccelerating particles to high energies in plasma wakefields is considered to ...
High-energy particle accelerators have been crucial in providing a deeper understanding of fundament...
The Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield experiment to exploi...
UnrestrictedParticle accelerators are the tools that physicists use today in order to probe the fund...
Next-generation plasma-based accelerators can push elec-tron bunches to gigaelectronvolt en...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m-1 with generation ...
Plasma photocathode wakefield acceleration combines energy gains of tens of GeV m$^{−1}$ with genera...
International audienceHigh gradients of energy gain and high energy efficiency are necessary paramet...
Next-generation plasma-based accelerators can push electron beams to GeV energies within centimeter ...
Plasma-wakefield accelerators driven by intense particle beams promise to significantly reduce the s...
Energy-efficient plasma-wakefield acceleration of particle bunches with low energy spread is a promi...
International audienceAccelerating particles to high energies in plasma wakefields is considered to ...
High-energy particle accelerators have been crucial in providing a deeper understanding of fundament...
The Advanced Wakefield Experiment (AWAKE) at CERN is the first plasma wakefield experiment to exploi...
UnrestrictedParticle accelerators are the tools that physicists use today in order to probe the fund...