Coherent regime of Kapitza-Dirac effect with electrons
arXiv:2511.14508 · doi:10.1103/9gg2-zy3l
Abstract
Electron matter waves coherently diffract when passing through a periodic structure of light formed by two interfering light waves. In this so-called Kapitza-Dirac effect, the electron momentum changes due to absorption and emission of photons via stimulated Compton scattering. Until now, the effect has only been observed with low energy electrons due to the small momentum of a visible photon compared to the momentum of high energy electron leading to diffraction angles of 10^(-4) rad or smaller. We report on the observation of the Kapitza-Dirac effect in a scanning electron microscope using high energy (20 and 30 keV) electrons with de-Broglie wavelengths of 9 pm and 7 pm, respectively. The photon sidebands in the electron transverse momentum spectrum are detected in the convergent beam diffraction geometry using spatial filtering. As the coupling strength between the electrons and the light field increases, the sideband populations exhibit coherent, reversible oscillations among diffraction orders. The effect can serve as a coherent electron beam-splitter or a phase-plate in various types of electron microscopes.
v2: AAM; licence: CC BY 4.0. Data necessary for replication of results are available in the Zenodo repository at https://doi.org/10.5281/zenodo.17614645
References in corpus (14)
- Ultrafast transmission electron microscopy using a laser-driven field emitter: femtosecond resolution with a high coherence electron beam
- Ponderomotive generation and detection of attosecond free-electron pulse trains
- Inelastic ponderomotive scattering of electrons at a high-intensity optical travelling wave in vacuum
- Optical Modulation of Electron Beams in Free Space
- Transverse Electron Beam Shaping with Light
- Spin-polarizing interferometric beam splitter for free electrons
- Observation of the relativistic reversal of the ponderomotive potential
- Polarization-dependent ponderomotive gradient force in a standing wave
- Spin effects in Kapitza-Dirac scattering at light with elliptical polarization
- Ultrafast Kapitza-Dirac effect
- Spin-dependent two-color Kapitza-Dirac effects
- Light-based electron aberration corrector
- Tunable quantum light by modulated free electrons
- Temporal characterization of femtosecond electron pulses inside ultrafast scanning electron microscope