Effect of electron–electron interactions on the emission characteristics of ultracold, nanoscale photoemission-based electron sources

G G. S. Gevorkyan (Department of Physics, Arizona State University 1 , Tempe, 85287,) R R. Ridley (Department of Physics, Arizona State University 1 , Tempe, 85287,) E E. Gonzalez H H. A. Padmore (Advanced Light Source Division, LBNL 2 , Berkeley, California 94720,) S S. Karkare (Arizona State University 5 , Tempe, Arizona 85004,)

Abstract

For nearly 60 years, cold field emitters have been the source of choice for electron microscopy due to their high brightness and relatively low energy spread. In this paper, we have examined an alternative: nanoscale electron sources based on near-threshold photoemission. While these sources have not yet been realized, they hold the potential to produce significantly brighter beams than cold field emitters. We model electron–electron Coulomb interactions in beams emitted from such sources to calculate the impact of these interactions on the brightness and the energy spread. Our results show that these sources can theoretically deliver more than an order of magnitude brighter electron beams compared to cold field emitters along with more than an order of magnitude smaller energy spread, before being limited by the Coulomb interactions. Electron sources with such high brightness and low energy spread would be transformational for electron microscopy, enabling electron energy loss-based vibrational spectroscopy at the sub-nanometer scale.

Article Details

Volume / Issue Vol. 137, Issue 2
Published January 14, 2025
ISSN 0021-8979
Publisher American Institute of Physics

Journal Info

Journal of Applied Physics

American Institute of Physics

ISSN: 0021-8979 Physical Sciences

Authors (5)

G

G. S. Gevorkyan

Department of Physics, Arizona State University 1 , Tempe, 85287,

R

R. Ridley

Department of Physics, Arizona State University 1 , Tempe, 85287,

E

E. Gonzalez

H

H. A. Padmore

Advanced Light Source Division, LBNL 2 , Berkeley, California 94720,

S

S. Karkare

Arizona State University 5 , Tempe, Arizona 85004,