Plasma lenses for ultrashort multi-petawatt laser pulses

An ideal plasma lens can provide the focusing power of a small f-number, solid-state focusing optic at a fraction of the diameter. An ideal plasma lens, however, relies on a steady-state, linear laser pulse-plasma interaction. Ultrashort multi-petawatt (MPW) pulses possess broad bandwidths and extre...

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Veröffentlicht in:Physics of plasmas 2015-12, Vol.22 (12)
Hauptverfasser: Palastro, J. P., Gordon, D., Hafizi, B., Johnson, L. A., Peñano, J., Hubbard, R. F., Helle, M., Kaganovich, D.
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Sprache:eng
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Zusammenfassung:An ideal plasma lens can provide the focusing power of a small f-number, solid-state focusing optic at a fraction of the diameter. An ideal plasma lens, however, relies on a steady-state, linear laser pulse-plasma interaction. Ultrashort multi-petawatt (MPW) pulses possess broad bandwidths and extreme intensities, and, as a result, their interaction with the plasma lens is neither steady state nor linear. Here, we examine nonlinear and time-dependent modifications to plasma lens focusing, and show that these result in chromatic and phase aberrations and amplitude distortion. We find that a plasma lens can provide enhanced focusing for 30 fs pulses with peak power up to ∼1 PW. The performance degrades through the MPW regime, until finally a focusing penalty is incurred at ∼10 PW.
ISSN:1070-664X
1089-7674
DOI:10.1063/1.4936286