Corrections to Laser Electron Thomson Scattering
Thomas Heinzl, Anton Ilderton

TL;DR
This paper analyzes classical and quantum corrections to laser-electron Thomson scattering, identifying key parameters that determine the significance of various correction effects such as radiation reaction and quantum influences.
Contribution
It introduces a systematic way to identify and compute leading order correction terms for classical and quantum effects in laser-electron scattering.
Findings
Characterization of dimensionless parameters for correction effects
Identification of leading order correction terms
Framework applicable to various laser-electron interaction regimes
Abstract
We discuss classical and quantum corrections to Thomson scattering between an electron and a laser. For radiation reaction, nonlinear, and quantum effects we identify characteristic dimensionless parameters in terms of which we determine the leading order correction terms.
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Taxonomy
TopicsAtomic and Molecular Physics · Laser-induced spectroscopy and plasma · Laser-Matter Interactions and Applications
