Radiation Sources Based on Laser-plasma Interactions
Overview
Biophysics
Public Health
Authors
Affiliations
Plasma waves excited by intense laser beams can be harnessed to produce femtosecond duration bunches of electrons with relativistic energies. The very large electrostatic forces of plasma density wakes trailing behind an intense laser pulse provide field potentials capable of accelerating charged particles to high energies over very short distances, as high as 1GeV in a few millimetres. The short length scale of plasma waves provides a means of developing very compact high-energy accelerators, which could form the basis of compact next-generation light sources with unique properties. Tuneable X-ray radiation and particle pulses with durations of the order of or less than 5fs should be possible and would be useful for probing matter on unprecedented time and spatial scales. If developed to fruition this revolutionary technology could reduce the size and cost of light sources by three orders of magnitude and, therefore, provide powerful new tools to a large scientific community. We will discuss how a laser-driven plasma wakefield accelerator can be used to produce radiation with unique characteristics over a very large spectral range.
Deng H, Zhang Z, Chen M, Li J, Cao Q, Hu X Materials (Basel). 2023; 16(8).
PMID: 37110114 PMC: 10144320. DOI: 10.3390/ma16083278.
Propagation of intense laser pulses in plasma with a prepared phase-space distribution.
Gupta D, Yoffe S, Jain A, Ersfeld B, Jaroszynski D Sci Rep. 2022; 12(1):20368.
PMID: 36437255 PMC: 9701684. DOI: 10.1038/s41598-022-24664-x.
Kokurewicz K, Brunetti E, Welsh G, Wiggins S, Boyd M, Sorensen A Sci Rep. 2019; 9(1):10837.
PMID: 31346184 PMC: 6658670. DOI: 10.1038/s41598-019-46630-w.
Three electron beams from a laser-plasma wakefield accelerator and the energy apportioning question.
Yang X, Brunetti E, Reboredo Gil D, Welsh G, Li F, Cipiccia S Sci Rep. 2017; 7:43910.
PMID: 28281679 PMC: 5345066. DOI: 10.1038/srep43910.
Laser-plasma-based Space Radiation Reproduction in the Laboratory.
Hidding B, Karger O, Konigstein T, Pretzler G, Manahan G, McKenna P Sci Rep. 2017; 7:42354.
PMID: 28176862 PMC: 5296722. DOI: 10.1038/srep42354.