Optimization Of Laser Wakefield Acceleration

dc.contributor.utaustinauthorRundquist, A. R.en
dc.contributor.utaustinauthorLeBlanc, S. P.en
dc.contributor.utaustinauthorGaul, E. W.en
dc.contributor.utaustinauthorCheshkov, S.en
dc.contributor.utaustinauthorGrigsby, F. B.en
dc.contributor.utaustinauthorTajima, T. T.en
dc.contributor.utaustinauthorDowner, M. C.en
dc.creatorRundquist, A. R.en
dc.creatorLeBlanc, S. P.en
dc.creatorGaul, E. W.en
dc.creatorCheshkov, S.en
dc.creatorGrigsby, F. B.en
dc.creatorTajima, T. T.en
dc.creatorDowner, M. C.en
dc.date.accessioned2015-04-16T14:48:31Zen
dc.date.available2015-04-16T14:48:31Zen
dc.date.issued2001en
dc.description.abstractUsing an evolutionary strategy algorithm, we optimize the generalized transformer ration of a laser wakefield accelerator. The algorithm tests several realistic pulse shapes by integrating the fluid wakefield differential equation and it converges to the shape that most efficiently produces a strong accelerating gradient while experiencing minimal distortion.en
dc.description.departmentPhysicsen
dc.identifier.citationA. R. Rundquist, S. P. LeBlanc, E. W. Gaul, S. Cheshkov, F. B. Grigsby, T. T. Tajima, and M. C. Downer. AIP Conference Proceedings 569, 177 (2001); doi: 10.1063/1.1384348en
dc.identifier.doidoi: 10.1063/1.1384348en
dc.identifier.issn0094-243Xen
dc.identifier.issn0-7354-0005-9en
dc.identifier.urihttp://hdl.handle.net/2152/29514en
dc.language.isoEnglishen
dc.relation.ispartofserialAdvanced Accelerator Conceptsen_US
dc.rightsAdministrative deposit of works to UT Digital Repository: This works author(s) is or was a University faculty member, student or staff member; this article is already available through open access or the publisher allows a PDF version of the article to be freely posted online. The library makes the deposit as a matter of fair use (for scholarly, educational, and research purposes), and to preserve the work and further secure public access to the works of the University.en
dc.subjectcapillary dischargeen
dc.subjectplasma-waveen
dc.subjectpulsesen
dc.subjectgenerationen
dc.subjectelectronsen
dc.subjectdynamicsen
dc.subjectchannelen
dc.subjectguideen
dc.subjectphysics, applieden
dc.subjectphysics, fluids & plasmasen
dc.subjectphysics, particles & fieldsen
dc.titleOptimization Of Laser Wakefield Accelerationen
dc.typeArticleen

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