Hume, E., Köster, P., Baffigi, F. et al. (12 more authors) (2025) An investigation of the emittance of escaping fast electron beams from planar and nanowire targets. High Power Laser Science and Engineering. e14. ISSN 2052-3289
Abstract
Fast electron generation and transport in high-intensity laser-solid interactions induces X-ray emission and drives ion acceleration. Effective production of these sources hinges on an efficient laser absorption into the fast electron population and control of divergence as the beam propagates through the target. Nanowire targets can be employed to increase the laser absorption, but it is not yet clear how the fast electron beam properties are modified. Here we present novel measurements of the emittance of the exiting fast electron beam from irradiated solid planar and nanowire targets via a pepper-pot diagnostic. The measurements indicate a greater fast electron emittance is obtained from nanowire targets. Two-dimensional particle-in-cell simulations support this conclusion, revealing beam defocusing at the wire-substrate boundary, a higher fast electron temperature and transverse oscillatory motion around the wires.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | Publisher Copyright: © The Author(s), 2025. Published by Cambridge University Press in association with Chinese Laser Press. |
Keywords: | emittance,Fast electrons,femtosecond,particle-in-cell,pepper-pot |
Dates: |
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Institution: | The University of York |
Academic Units: | The University of York > Faculty of Sciences (York) > Physics (York) |
Depositing User: | Pure (York) |
Date Deposited: | 25 Apr 2025 11:00 |
Last Modified: | 25 Apr 2025 11:00 |
Published Version: | https://doi.org/10.1017/hpl.2025.5 |
Status: | Published online |
Refereed: | Yes |
Identification Number: | 10.1017/hpl.2025.5 |
Related URLs: | |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:225805 |
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Description: An investigation of the emittance of escaping fast electron beams from planar and nanowire targets
Licence: CC-BY-NC 2.5