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Bright X-ray radiation from plasma bubbles in an evolving laser wakefield accelerator

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1710.05740v2.pdfWorking paper1.59 MBAdobe PDFView/Open
Title: Bright X-ray radiation from plasma bubbles in an evolving laser wakefield accelerator
Authors: Bloom, MS
Streeter, MJV
Kneip, S
Bendoyro, RA
Cheklov, O
Cole, JM
Doepp, A
Hooker, CJ
Holloway, J
Jiang, J
Lopes, NC
Nakamura, H
Norreys, PA
Rajeev, PP
Symes, DR
Schreiber, J
Wood, JC
Wing, M
Najmudin, Z
Mangles, SPD
Item Type: Working Paper
Abstract: We show that the properties of the electron beam and bright X-rays produced by a laser wakefield accelerator can be predicted if the distance over which the laser self-focuses and compresses prior to self-injection is taken into account. A model based on oscillations of the beam inside a plasma bubble shows that performance is optimised when the plasma length is matched to the laser depletion length. With a 200~TW laser pulse this results in an X-ray beam with median photon energy of 20 keV, $> 10^{9}$ photons per shot and a peak brightness of $4 \times 10^{23}$ photons s$^{-1}$ mrad$^{-2}$ mm$^{-2}$ (0.1 % BW)$^{-1}$.
URI: http://hdl.handle.net/10044/1/59841
Copyright Statement: © 2017 The Author(s)
Keywords: physics.plasm-ph
physics.acc-ph
Notes: 5 pages, 4 figures
Appears in Collections:Plasma Physics
Faculty of Natural Sciences