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20182022
most citedRecovery time of a plasma-wakefield accelerator

57 citations · 133 across the 6 of their papers we have counts for

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physics.acc-ph20225 cited

Report of Snowmass 21 Accelerator Frontier Topical Group 6 on Advanced Accelerators

C. Geddes, M. Hogan, P. Musumeci +1

The Snowmass 2021 Accelerator Frontier topical group \# 6 on Advanced Accelerator Concepts, covers new R\&D concepts for particle acceleration, generation, and focusing. Based on c…

physics.acc-ph20221 cited

Emittance preservation in advanced accelerators

Carl A. Lindstrøm, Maxence Thévenet

Emittance is a beam quality that is vital for many future applications of advanced accelerators, such as compact free-electron lasers and linear colliders. In this paper, we review…

physics.acc-ph202257 cited

Recovery time of a plasma-wakefield accelerator

R. D'Arcy, J. Chappell, J. Beinortaite +14

The interaction of intense particle bunches with plasma can give rise to plasma wakes capable of sustaining gigavolt-per-metre electric fields, which are orders of magnitude higher…

physics.acc-ph202222 cited

Stability of ionisation-injection-based laser-plasma accelerators

Simon Bohlen, Jonathan C. Wood, Theresa Brümmer +7

Laser-plasma acceleration (LPA) is a compact technique to accelerate electron bunches to highly relativistic energies, making it a promising candidate to power radiation sources fo…

physics.acc-ph2021

Self-correcting longitudinal phase space in a multistage plasma accelerator

Carl A. Lindstrøm

Plasma accelerators driven by intense laser or particle beams provide gigavolt-per-meter accelerating fields, promising to drastically shrink particle accelerators for high-energy…

physics.acc-ph2020

Staging of High-Gradient Wakefield Accelerators

C. A. Lindstrøm

Accelerating particles to high energies with a high-gradient wakefield accelerator may require use of multiple stages. Coupling beams from one stage to another can be difficult due…