Related Experiment Video
Updated: Aug 29, 2026

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
Observation of a relativistic analog of the Brewster effect in electron-photon scattering
Brian Schaap1, Maximilian Lenz2, Pietro Musumeci3
1Department of Physics and Astronomy, University of California at Los Angeles, Los Angeles, CA, USA. schaap@physics.ucla.edu.
Abstract:
The scattering of light by relativistic charged particles is a fundamental process in electrodynamics, underpinning phenomena ranging from cosmic ray interactions to laboratory X-ray generation. While the spectral and temporal properties of this process are well understood, the polarization-dependent response as a function of incidence angle has remained largely unexplored. Here we report the experimental observation of a relativistic analog to the Brewster effect in the interaction between a high-brightness relativistic electron beam and an optical laser pulse at shallow incidence. For incident radiation polarized in the plane of scattering, Lorentz-transformations predict a distinct interaction angle at which photon emission is suppressed in the forward direction, in close analogy with Brewster reflection at dielectric interfaces. These results connect a central concept of classical optics to the relativistic electron-photon scattering and highlight polarization as a controllable degree of freedom in light-matter interactions involving high-energy particle beams.
Related Concept Videos
The de Broglie Wavelength
Photoelectric Effect
The Uncertainty Principle
Interaction of EM Radiation with Matter: Spectroscopy
Interference and Diffraction
The Bohr Model

