Published March 5, 2024 | Version v1
Journal article Open

Electron beams traversing spherical nanoparticles: Analytic and numerical treatment

  • 1. POLIMA—Center for Polariton-driven Light-Matter Interactions, University of Southern Denmark, 5230 Odense M, Denmark
  • 2. Humboldt-Universität zu Berlin, Institut für Physik, AG Theoretische Optik and Photonik, 12489 Berlin, Germany
  • 3. Max-Born-Institut, 12489 Berlin, Germany
  • 4. Danish Institute for Advanced Study, University of Southern Denmark, 5230 Odense M, Denmark

Description

We present an analytic, Mie theory-based solution for the energy loss and the photon-emission probabilities in the interaction of spherical nanoparticles with electrons passing nearby and through them, in both cathodoluminescence and electron energy-loss spectroscopies. In particular, we focus on the case of penetrating electron trajectories, for which the complete fully electrodynamic and relativistic formalism has not been reported as yet. We exhibit the efficiency of this method in describing collective excitations in matter through calculations for a dispersive and lossy system, namely a sphere described by a Drude permittivity. Subsequently, we use the analytic solution to corroborate the implementation of electron-beam sources in a state-of-the-art numerical method for problems in electrodynamics, the discontinuous Galerkin time-domain (DGTD) method. We show that the two approaches produce spectra in good mutual agreement, and demonstrate the versatility of DGTD via simulations of spherical nanoparticles characterized by surface roughness. The possibility of simultaneously employing both kinds of calculations (analytic and numerical) facilitates a better understanding of the rich optical response of nanophotonic architectures excited by fast electron beams.

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10.1103_PhysRevResearch.6.013239.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevResearch.6.013239;
Crossref Funder ID
10.13039/501100001659; 10.13039/100008398; 10.13039/501100001732;

Publishing Information

Journal Title
Physical Review Research
Journal Volume
6
Journal Issue
1
Journal Page Range
15 pgs.
ISSN
2643-1564

Optional Information

Contract/Grant/Project number
398816777; DNRF165
Notes
Contact Email: elli@mci.sdu.dk; Contact Email: kurt.busch@physik.hu-berlin.de; Contact Email: cwo@mci.sdu.dk; Record automatically processed
Funding organization
Deutsche Forschungsgemeinschaft; Villum Fonden; Danmarks Grundforskningsfond