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PHYSICAL REVIEW E 68, 056402 共2003兲 Relativistic electron acceleration in focused laser fields after above-threshold ionization I. Y. Dodin and N. J. Fisch Princeton Plasma Physics Laboratory, Princeton, New Jersey
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Document Date: 2003-11-22 17:51:24


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City

Princeton / New York / /

Company

Pergamon Press / /

Country

United States / /

Currency

USD / /

Facility

The bar / N. J. Fisch Princeton Plasma Physics Laboratory / /

IndustryTerm

drift energy / electron energy gain / energy gain / normalized energy / phase-average particle energy / characteristic energy / average energy / normalized drift energy / retained energy / normalized retained energy / relativistic energy / energy plots / phase-average energy / particle energy / net energy gain / maximal retained energy / particle net energy gain / power laser technology / electron drift energy / petawatt laser systems / conservation law / normalized electron energy / precise energy gain / particle energy gain / laser systems / electron energy / energy / center energy / /

Organization

I. Y. Dodin and N. J. Fisch Princeton Plasma Physics Laboratory / U.S. DOE / U.S. Securities and Exchange Commission / /

Person

Q. Kong / T.A. Antonsen / Jr. / S. Scheid / L.J. Zhu / E. Esarey / H. Hora / P. Sprangle / A. Ting / N. Cao / E. Briscoe / S.N. Fochs / J. Krall / R.F. Hubbard / J.F. Hua / Y. Nishida / B. Hafizi / L.C. Luhmann / Jr. / Y.Z. Lin / Y.K. Ho / L. Feng / J.G. Woodworth / T. Jones / A.M. Sessler / P.X. Wang / P. Mora / /

Position

model / both analytically and numerically / G.P. / Cao / /

ProvinceOrState

New Jersey / New York / /

Technology

radiation / laser / high-power laser technology / /

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