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Accurate electron beam phase-space theory for ionization-injection schemes driven by laser pulses

Academic Article
Publication Date:
2022
abstract:
After the introduction of the ionization-injection scheme in laser wake field acceleration and of related high-quality electron beam generation methods, such as two-color and resonant multi-pulse ionization injection (ReMPI), the theory of thermal emittance has been used to predict the beam normalized emittance obtainable with those schemes. We recast and extend such a theory, including both higher order terms in the polynomial laser field expansion and non-polynomial corrections due to the onset of saturation effects on a single cycle. Also, a very accurate model for predicting the cycle-averaged distribution of the extracted electrons, including saturation and multi-process events, is proposed and tested. We show that our theory is very accurate for the selected processes of Kr8+-> 10+ and Ar8+-> 10+ resulting in a maximum error below 1%, even in a deep-saturation regime. The accurate prediction of the beam phase-space can be implemented, for example, in laser-envelope or hybrid particle-in-cell (PIC)/fluid codes, to correctly mimic the cycle-averaged momentum distribution without the need for resolving the intra-cycle dynamics. We introduce further spatial averaging, obtaining expressions for the whole-beam emittance fitting with simulations in a saturated regime, too. Finally, a PIC simulation for a laser wakefield acceleration injector in the ReMPI configuration is discussed.
Iris type:
01.01 Articolo in rivista
Keywords:
field theory ionization; high-quality electron beams; ionization injection; laser wakefield acceleration; laser-plasma acceleration; resonant multi-pulse ionization injection; tunnel ionization; two-color ionization; ultraintense laser pulses
List of contributors:
Gizzi, LEONIDA ANTONIO; Labate, LUCA UMBERTO; Tomassini, Paolo
Authors of the University:
GIZZI LEONIDA ANTONIO
LABATE LUCA UMBERTO
Handle:
https://iris.cnr.it/handle/20.500.14243/415918
Published in:
HIGH POWER LASER SCIENCE AND ENGINEERING
Journal
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URL

https://www.cambridge.org/core/journals/high-power-laser-science-and-engineering/article/accurate-electron-beam-phasespace-theory-for-ionizationinjection-schemes-driven-by-laser-pulses/3EBCA963089C3544041926FE2AAA4A46
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