Nanosecond Imaging of Shock- and Jet-Like Features
The production of shock-and collimated jet-like features is recorded from the self-emission of a plasma using a 16-frame camera, which can show the progression of the interaction over short (100s ns) durations. A cluster of laser beams, with intensity 1015 W/cm2 , was focused onto a planar aluminum...
Main Authors: | , , , , , , , , , , , , , , |
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Format: | Journal article |
Language: | English |
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Institute of Electrical and Electronics Engineers Inc.
2014
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_version_ | 1797098407172505600 |
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author | Tubman, E Crowston, R Alraddadi, R Doyle, H Meinecke, J Cross, J Bolis, R Lamb, D Tzeferacos, P Doria, D Reville, B Ahmed, H Borghesi, M Gregori, G Woolsey, N |
author_facet | Tubman, E Crowston, R Alraddadi, R Doyle, H Meinecke, J Cross, J Bolis, R Lamb, D Tzeferacos, P Doria, D Reville, B Ahmed, H Borghesi, M Gregori, G Woolsey, N |
author_sort | Tubman, E |
collection | OXFORD |
description | The production of shock-and collimated jet-like features is recorded from the self-emission of a plasma using a 16-frame camera, which can show the progression of the interaction over short (100s ns) durations. A cluster of laser beams, with intensity 1015 W/cm2 , was focused onto a planar aluminum foil to produce a plasma that expanded into 0.7 mbar of argon gas. The acquisition of 16 ultrafast images on a single shot allows prompt spatial and temporal characterization of the plasma and enables the velocity of the jet-and shock-like features to be calculated. |
first_indexed | 2024-03-07T05:09:06Z |
format | Journal article |
id | oxford-uuid:daf2f19c-12cd-467b-b1d2-58294494ccf6 |
institution | University of Oxford |
language | English |
last_indexed | 2024-03-07T05:09:06Z |
publishDate | 2014 |
publisher | Institute of Electrical and Electronics Engineers Inc. |
record_format | dspace |
spelling | oxford-uuid:daf2f19c-12cd-467b-b1d2-58294494ccf62022-03-27T09:06:51ZNanosecond Imaging of Shock- and Jet-Like FeaturesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:daf2f19c-12cd-467b-b1d2-58294494ccf6EnglishSymplectic Elements at OxfordInstitute of Electrical and Electronics Engineers Inc.2014Tubman, ECrowston, RAlraddadi, RDoyle, HMeinecke, JCross, JBolis, RLamb, DTzeferacos, PDoria, DReville, BAhmed, HBorghesi, MGregori, GWoolsey, NThe production of shock-and collimated jet-like features is recorded from the self-emission of a plasma using a 16-frame camera, which can show the progression of the interaction over short (100s ns) durations. A cluster of laser beams, with intensity 1015 W/cm2 , was focused onto a planar aluminum foil to produce a plasma that expanded into 0.7 mbar of argon gas. The acquisition of 16 ultrafast images on a single shot allows prompt spatial and temporal characterization of the plasma and enables the velocity of the jet-and shock-like features to be calculated. |
spellingShingle | Tubman, E Crowston, R Alraddadi, R Doyle, H Meinecke, J Cross, J Bolis, R Lamb, D Tzeferacos, P Doria, D Reville, B Ahmed, H Borghesi, M Gregori, G Woolsey, N Nanosecond Imaging of Shock- and Jet-Like Features |
title | Nanosecond Imaging of Shock- and Jet-Like Features |
title_full | Nanosecond Imaging of Shock- and Jet-Like Features |
title_fullStr | Nanosecond Imaging of Shock- and Jet-Like Features |
title_full_unstemmed | Nanosecond Imaging of Shock- and Jet-Like Features |
title_short | Nanosecond Imaging of Shock- and Jet-Like Features |
title_sort | nanosecond imaging of shock and jet like features |
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