Potential to measure quantum effects in recent all-optical radiation reaction experiments

Arran, C. and Cole, J. M. and Gerstmayr, E. and Blackburn, T. G. and Mangles, S. P.D. and Ridgers, C. P. (2019) Potential to measure quantum effects in recent all-optical radiation reaction experiments. In: Research Using Extreme Light : Entering New Frontiers with Petawatt-Class Lasers IV. Proceedings of SPIE - The International Society for Optical Engineering . SPIE, CZE. ISBN 9781510627444

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Abstract

The construction of 10 PW class laser facilities with unprecedented intensities has emphasized the need for a thorough understanding of the radiation reaction process. We describe simulations for a recent all-optical colliding pulse experiment, where a GeV scale electron bunch produced by a laser wakefield accelerator interacted with a counter-propagating laser pulse. In the rest frame of the electron bunch, the electric field of the laser pulse is increased by several orders of magnitude, approaching the Schwinger field and leading to substantial variation from the classical Landau-Lifshitz model. Our simulations show how the final electron and photon spectra may allow us to differentiate between stochastic and semi-classical models of radiation reaction, even when there is significant shot-to-shot variation in the experimental parameters. In particular, constraints are placed on the maximum energy spread and shot-to-shot variation permissible if a stochastic model is to be proven with confidence.

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Contribution in Book/Report/Proceedings
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Uncontrolled Keywords:
Research Output Funding/yes_externally_funded
Subjects:
?? yes - externally fundednoelectronic, optical and magnetic materialscondensed matter physicscomputer science applicationsapplied mathematicselectrical and electronic engineering ??
ID Code:
227329
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Deposited On:
03 Feb 2025 15:25
Refereed?:
Yes
Published?:
Published
Last Modified:
04 Feb 2025 00:45