article Open access

Selectively steering photon spin angular momentum via electron-induced optical spin Hall effect

  • Science Advances
  • American Association for the Advancement of Science
Research footprint

At a glance

Citations
30
References
67
Comments
0
Paper overview

Öz

The development of the optical spin Hall effect (OSHE) realizes the splitting of different spin components, contributing to the manipulation of photon spin angular momentum that acts as the information carrier for quantum technology. However, OSHE with optical excitation lacks active control of photon angular momentum at deep subwavelength scale because of the optical diffraction limit. Here, we experimentally demonstrate a selective manipulation of photon spin angular momentum at a deep subwavelength scale via electron-induced OSHE in Au nanoantennas. The inversion of the OSHE radiation pattern is observed by angle-resolved cathodoluminescence polarimetry with the electron impact position shifting within 80 nm in a single antenna unit. By this selective steering of photon spin, we propose an information encoding with robustness, privacy, and high level of integration at a deep subwavelength scale for the future quantum applications.

Record transparency

Publication details

DOI
10.1126/sciadv.abf8011
OpenAlex
W3157023424
Document type
article
Language
EN
Source
Science Advances
Last metadata update
Community

Comments

Oturum Açın to join the discussion.

  1. No comments yet. Start the discussion.