- By:
- Bogroff, Malcolm N; Cowley, Gabriel T; Nicastro, Ariel ; Levy, David E; Wu, Yueh-Chun ; Mao, Nannan ; Yang, Tilo; Zhang, Tianyi; Kong, Jing; Vasudevan, Rama K; Kelley, Kyle P; Lawrie, Benjamin J
- Journal Name:
- Nanophotonics
- Page Number:
- 1-7
- Volume:
- NA
- Publication Date:
- April 21, 2025
- View DOI Listing:
- https://doi.org/10.1515/nanoph-2024-0724
Abstract
Cathodoluminescence microscopy is now a well-established and powerful tool for probing the photonic properties of nanoscale materials, but in many cases, nanophotonic materials are easily damaged by the electron-beam doses necessary to achieve reasonable cathodoluminescence signal-to-noise ratios. Two-dimensional materials have proven particularly susceptible to beam-induced modifications, yielding both obstacles to high spatial-resolution measurement and opportunities for beam-induced patterning of quantum photonic systems. Here pan-sharpening techniques are applied to cathodoluminescence microscopy in order to address these challenges and experimentally demonstrate the promise of pan-sharpening for minimally-perturbative high-spatial-resolution spectrum imaging of beam-sensitive materials.