Electron round lenses with negative spherical aberration by a tightly focused cylindrically polarized light beam
arXiv:2103.16406 · doi:10.1103/PhysRevApplied.16.L011002
Abstract
Free electrons moving in an optical standing wave field feel the ponderomotive potential, acting as a refractive-index medium in electron optics. Emerging technologies involving this potential have been proposed and realized in electron microscopy, such as electron phase-contrast imaging using a laser standing wave in an optical enhancement cavity. However, the interaction between electrons with a cylindrically distributed optical field has not been investigated although its suitability for electron-optical imaging systems. In this study, we theoretically show that the divergence and convergence forces are provided by tightly focused cylindrically polarized light beams. The radially and azimuthally polarized beams with an annular profile are focused using a high numerical aperture optical lens. The intensity distributions at the focus function are concave and convex electron round lenses, respectively. The convex lens formed by the azimuthally polarized beam possesses negative (opposite sign) spherical aberration compared with conventional electron round lenses created by electrodes and magnetic coils. This remarkable result will contribute to the innovative design of electron-optical imaging systems and bring new capabilities into matter-wave optics.
6 pages, 3 figures
References in corpus (7)
- Ponderomotive generation and detection of attosecond free-electron pulse trains
- Inelastic ponderomotive scattering of electrons at a high-intensity optical travelling wave in vacuum
- Generation and Characterization of Attosecond Micro-Bunched Electron Pulse Trains via Dielectric Laser Acceleration
- Optical Modulation of Electron Beams in Free Space
- Design of an electron microscope phase plate using a focused continuous-wave laser
- Electron Beam Aberration Correction Using Optical Near Fields
- Spin-polarizing interferometric beam splitter for free electrons
Cited by in corpus (6)
- Transverse Electron Beam Shaping with Light
- Properties of electron lenses produced by ponderomotive potential with Bessel and Laguerre-Gaussian beams
- Design for light-based spherical aberration correction of ultrafast electron microscopes
- Light-based Chromatic Aberration Correction of Ultrafast Electron Microscopes
- Light-based electron aberration corrector
- Electromagnetic lensing using the Aharonov-Bohm effect