Stable laser-acceleration of high-flux proton beams with plasma collimation

M M. J. V. Streeter G G. D. Glenn S S. DiIorio F F. Treffert B B. Loughran H H. Ahmed S S. Astbury M M. Borghesi N N. Bourgeois C C. B. Curry S S. J. D. Dann N N. P. Dover T T. Dzelzainis O O. C. Ettlinger M M. Gauthier L L. Giuffrida S S. H. Glenzer R R. J. Gray J J. S. Green G G. S. Hicks C C. Hyland V V. Istokskaia M M. King D D. Margarone O O. McCusker P P. McKenna Z Z. Najmudin C C. Parisuaña P P. Parsons C C. Spindloe D D. R. Symes A A. G. R. Thomas N N. Xu C C. A. J. Palmer

Abstract

Abstract Laser-plasma acceleration of protons offers a compact, ultra-fast alternative to conventional acceleration techniques, and is being widely pursued for potential applications in medicine, industry and fundamental science. Creating a stable, collimated beam of protons at high repetition rates presents a key challenge. Here, we demonstrate the generation of multi-MeV proton beams from a fast-replenishing ambient-temperature liquid sheet. The beam has an unprecedentedly low divergence of 1° (≤20 mrad), resulting from magnetic self-guiding of the proton beam during propagation through a low density vapour. The proton beams, generated at a repetition rate of 5 Hz using only 190 mJ of laser energy, exhibit a hundred-fold increase in flux compared to beams from a solid target. Coupled with the high shot-to-shot stability of this source, this represents a crucial step towards applications.

Article Details

Volume / Issue Vol. 16, Issue 1
Published January 24, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (34)

M

M. J. V. Streeter

G

G. D. Glenn

S

S. DiIorio

F

F. Treffert

B

B. Loughran

H

H. Ahmed

S

S. Astbury

M

M. Borghesi

N

N. Bourgeois

C

C. B. Curry

S

S. J. D. Dann

N

N. P. Dover

T

T. Dzelzainis

O

O. C. Ettlinger

M

M. Gauthier

L

L. Giuffrida

S

S. H. Glenzer

R

R. J. Gray

J

J. S. Green

G

G. S. Hicks

C

C. Hyland

V

V. Istokskaia

M

M. King

D

D. Margarone

O

O. McCusker

P

P. McKenna

Z

Z. Najmudin

C

C. Parisuaña

P

P. Parsons

C

C. Spindloe

D

D. R. Symes

A

A. G. R. Thomas

N

N. Xu

C

C. A. J. Palmer