Coherent regime of Kapitza-Dirac effect with electrons

Fuente: arXiv
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Main Authors: Moriová, Kamila, Koutenský, Petr, Streshkova, Neli Laštovičková, Mihaila, Marius Constantin Chirita, Šobáň, Zbyněk, Kopeček, Jaromír, Schertel, Andreas, Kozák, Martin
Format: Preprint
Published: 2025
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author Moriová, Kamila
Koutenský, Petr
Streshkova, Neli Laštovičková
Mihaila, Marius Constantin Chirita
Šobáň, Zbyněk
Kopeček, Jaromír
Schertel, Andreas
Kozák, Martin
author_facet Moriová, Kamila
Koutenský, Petr
Streshkova, Neli Laštovičková
Mihaila, Marius Constantin Chirita
Šobáň, Zbyněk
Kopeček, Jaromír
Schertel, Andreas
Kozák, Martin
contents 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 keV 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.
format Preprint
id arxiv_https___arxiv_org_abs_2511_14508
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Coherent regime of Kapitza-Dirac effect with electrons
Moriová, Kamila
Koutenský, Petr
Streshkova, Neli Laštovičková
Mihaila, Marius Constantin Chirita
Šobáň, Zbyněk
Kopeček, Jaromír
Schertel, Andreas
Kozák, Martin
Quantum Physics
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 keV 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.
title Coherent regime of Kapitza-Dirac effect with electrons
topic Quantum Physics
url https://arxiv.org/abs/2511.14508