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research article

Ultrafast generation and control of an electron vortex beam via chiral plasmonic near fields

Vanacore, Giovanni Maria  
•
Berruto, Gabriele  
•
Madan, Ivan  
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May 6, 2019
Nature Materials

Vortex-carrying matter waves, such as chiral electron beams, are of significant interest in both applied and fundamental science. Continuous-wave electron vortex beams are commonly prepared via passive phase masks imprinting a transverse phase modulation on the electron’s wavefunction. Here, we show that femtosecond chiral plasmonic near fields enable the generation and dynamic control on the ultrafast timescale of an electron vortex beam. The vortex structure of the resulting electron wavepacket is probed in both real and reciprocal space using ultrafast transmission electron microscopy. This method offers a high degree of scalability to small length scales and a highly efficient manipulation of the electron vorticity with attosecond precision. Besides the direct implications in the investigation of nanoscale ultrafast processes in which chirality plays a major role, we further discuss the perspectives of using this technique to shape the wavefunction of charged composite particles, such as protons, and how it can be used to probe their internal structure.

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Type
research article
DOI
10.1038/s41563-019-0336-1
Author(s)
Vanacore, Giovanni Maria  
Berruto, Gabriele  
Madan, Ivan  
Pomarico, Enrico  
Biagioni, P
Lamb, R. J.
McGrouther, D
Reinhardt, O.
Kaminer, I.
Barwick, B.
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Date Issued

2019-05-06

Published in
Nature Materials
Volume

18

Issue

6

Start page

573

End page

579

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LUMES  
Available on Infoscience
June 7, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/156733
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