Bright electron bunches from a plasma-wakefield accelerator with a steep density down-ramp

J J. C. Wood L L. Boulton J J. Beinortaitė J J. Björklund Svensson S S. Bohlen G G. Boyle J J. M. Garland P P. Gonzalez Caminal C C. A. Lindstrøm G G. Loisch S S. M. Mewes T T. Parikh F F. Peña K K. Põder S S. Schröder M M. Thévenet S S. Wesch J J. Osterhoff R R. D’Arcy

Abstract

Abstract High-brightness electron bunches drive fundamental research in particle physics and photon science. Key to achieving a high brightness is to have a low transverse emittance, which ensures that the bunch can be tightly focussed. In radiofrequency accelerators a low initial emittance can be rapidly degraded due to space charge forces, which are greatly diminished once the electron bunch attains a relativistic velocity. A plasma accelerator can maintain orders-of-magnitude higher accelerating fields than radiofrequency accelerators, while multiple techniques exist to create a low emittance electron bunch directly inside the plasma accelerator structure. Plasma accelerators therefore offer a possibility to create high-brightness bunches in wakefields driven even by low-quality drive bunches. Here we demonstrate the injection and gigavolt-per-metre acceleration of electron bunches with mm-mrad normalised emittance, $${{{\mathcal{O}}}}$$ O (10 pC/MeV) spectral density and per-cent-level energy spread, all with excellent reproducibility.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 11, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (19)

J

J. C. Wood

L

L. Boulton

J

J. Beinortaitė

J

J. Björklund Svensson

S

S. Bohlen

G

G. Boyle

J

J. M. Garland

P

P. Gonzalez Caminal

C

C. A. Lindstrøm

G

G. Loisch

S

S. M. Mewes

T

T. Parikh

F

F. Peña

K

K. Põder

S

S. Schröder

M

M. Thévenet

S

S. Wesch

J

J. Osterhoff

R

R. D’Arcy