Spin-to-Orbital Angular Momentum Conversion and Spin-Polarization Filtering in Electron Beams
Atomic Physics
2012-01-31 v1 Accelerator Physics
Abstract
We propose the design of a space-variant Wien filter for electron beams that induces a spin half-turn and converts the corresponding spin angular momentum variation into orbital angular momentum of the beam itself by exploiting a geometrical phase arising in the spin manipulation. When applied to a spatially coherent input spin-polarized electron beam, such a device can generate an electron vortex beam, carrying orbital angular momentum. When applied to an unpolarized input beam, the proposed device, in combination with a suitable diffraction element, can act as a very effective spin-polarization filter. The same approach can also be applied to neutron or atom beams.
Keywords
Cite
@article{arxiv.1201.6063,
title = {Spin-to-Orbital Angular Momentum Conversion and Spin-Polarization Filtering in Electron Beams},
author = {Ebrahim Karimi and Lorenzo Marrucci and Vincenzo Grillo and Enrico Santamato},
journal= {arXiv preprint arXiv:1201.6063},
year = {2012}
}
Comments
9 pages, 5 figures