activity
20182020
collaborators

6 papers

physics.acc-ph2020

Tunable and precise two-bunch generation at FLASHForward

S. Schröder, K. Ludwig, A. Aschikhin +17

Beam-driven plasma-wakefield acceleration based on external injection has the potential to significantly reduce the size of future accelerators. Stability and quality of the accele…

physics.acc-ph2019

FLASHForward: Plasma-wakefield accelerator science for high-average-power applications

R. D'Arcy, A. Aschikhin, S. Bohlen +33

The FLASHForward experimental facility is a high-performance test-bed for precision plasma-wakefield research, aiming to accelerate high-quality electron beams to GeV-levels in a f…

physics.plasm-ph2018

A tunable plasma-based energy dechirper

R. D'Arcy, S. Wesch, A. Aschikhin +23

A tunable plasma-based energy dechirper has been developed at FLASHForward to remove the correlated energy spread of a 681~MeV electron bunch. Through the interaction of the bunch…

physics.acc-ph2018

Emittance Preservation in an Aberration-Free Active Plasma Lens

C. A. Lindstrøm, E. Adli, G. Boyle +9

Active plasma lensing is a compact technology for strong focusing of charged particle beams, which has gained considerable interest for use in novel accelerator schemes. While prov…

physics.acc-ph2018

Direct Measurement of Focusing Fields in Active Plasma Lenses

J. -H. Röckemann, L. Schaper, S. K. Barber +17

Active plasma lenses have the potential to enable broad-ranging applications of plasma-based accelerators owing to their compact design and radially symmetric kT/m-level focusing f…

physics.acc-ph2018

Overview of the CLEAR plasma lens experiment

C. A. Lindstrøm, K. N. Sjobak, E. Adli +8

Discharge capillary-based active plasma lenses are a promising new technology for strongly focusing charged particle beams, especially when combined with novel high gradient accele…