Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas

Multi - MeV ion spectra reproduced with absolute spectral index agrees with the experimental data and meet the needs to critically analyze the repetitive pulsed plasma mode of applications. The ion acceleration parameter, , predicts mean ion energy and that is related to the electric discharge com...

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Main Authors: M.V., Roshan, Nadia Vahdat, Roshan, Arwinder, Singh
Format: Article
Published: Elsevier Ltd. 2023
Subjects:
Online Access:http://eprints.intimal.edu.my/1718/
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author M.V., Roshan
Nadia Vahdat, Roshan
Arwinder, Singh
author_facet M.V., Roshan
Nadia Vahdat, Roshan
Arwinder, Singh
author_sort M.V., Roshan
building INTI Institutional Repository
collection Online Access
description Multi - MeV ion spectra reproduced with absolute spectral index agrees with the experimental data and meet the needs to critically analyze the repetitive pulsed plasma mode of applications. The ion acceleration parameter, , predicts mean ion energy and that is related to the electric discharge components based upon the precision measurements. Proper selection of repetition rate offers a relatively stable proton beam to acquire the survival curves of irradiated targets. DSB rate for plasma focus operated at , is with corresponding surviving probability of the order of . The surviving fraction is likely to be more affected by higher dose frequencies.
first_indexed 2025-11-14T11:57:08Z
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institution INTI International University
institution_category Local University
last_indexed 2025-11-14T11:57:08Z
publishDate 2023
publisher Elsevier Ltd.
recordtype eprints
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spelling intimal-17182023-01-31T06:49:39Z http://eprints.intimal.edu.my/1718/ Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas M.V., Roshan Nadia Vahdat, Roshan Arwinder, Singh QC Physics T Technology (General) TA Engineering (General). Civil engineering (General) Multi - MeV ion spectra reproduced with absolute spectral index agrees with the experimental data and meet the needs to critically analyze the repetitive pulsed plasma mode of applications. The ion acceleration parameter, , predicts mean ion energy and that is related to the electric discharge components based upon the precision measurements. Proper selection of repetition rate offers a relatively stable proton beam to acquire the survival curves of irradiated targets. DSB rate for plasma focus operated at , is with corresponding surviving probability of the order of . The surviving fraction is likely to be more affected by higher dose frequencies. Elsevier Ltd. 2023-01-31 Article PeerReviewed M.V., Roshan and Nadia Vahdat, Roshan and Arwinder, Singh (2023) Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas. Applied Radiation and Isotopes, 2023 (110706). ISSN 0969-8043 https://doi.org/10.1016/j.apradiso.2023.110706
spellingShingle QC Physics
T Technology (General)
TA Engineering (General). Civil engineering (General)
M.V., Roshan
Nadia Vahdat, Roshan
Arwinder, Singh
Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title_full Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title_fullStr Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title_full_unstemmed Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title_short Acceleration analysis of repetitive multi-MeV ion beams from pulsed plasmas
title_sort acceleration analysis of repetitive multi-mev ion beams from pulsed plasmas
topic QC Physics
T Technology (General)
TA Engineering (General). Civil engineering (General)
url http://eprints.intimal.edu.my/1718/
http://eprints.intimal.edu.my/1718/