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Epitaxy of GaSe Coupled to Graphene: from In-situ Band Engineering to Photon Sensing (2024)
Journal Article
Bradford, J., Dewes, B. T., Shiffa, M., Cottam, N. D., Rahman, K., Cheng, T. S., Novikov, S. V., Makarovsky, O., O'Shea, J. N., Beton, P. H., Lara-Avila, S., Harknett, J., Greenaway, M. T., & Patanè, A. (in press). Epitaxy of GaSe Coupled to Graphene: from In-situ Band Engineering to Photon Sensing. Small,

Two-dimensional semiconductors can drive advances in quantum science and technologies. However, they should be free of any contamination; also, the crystallographic ordering and coupling of adjacent layers, and their electronic properties should be w... Read More about Epitaxy of GaSe Coupled to Graphene: from In-situ Band Engineering to Photon Sensing.

Spatially-resolved UV-C emission in epitaxial monolayer boron nitride (2024)
Journal Article
Rousseau, A., Plo, J., Plo, J., Valvin, P., Cheng, T. S., Bradford, J., James, T. S. S., Wrigley, J., Mellor, C. J., Beton, P. H., Novikov, S. V., Jacques, V., Gil, B., & Cassabois, G. (2024). Spatially-resolved UV-C emission in epitaxial monolayer boron nitride. 2D Materials, 11(2), Article 025026. https://doi.org/10.1088/2053-1583/ad2f45

We report hyperspectral imaging in the UV-C spectral domain in epitaxial monolayers of hexagonal boron nitride (hBN). Under quasi-resonant laser excitation, the UV-C emission of monolayer hBN consists in resonant Raman scattering and photoluminescenc... Read More about Spatially-resolved UV-C emission in epitaxial monolayer boron nitride.

Cathodoluminescence spectroscopy of monolayer hexagonal boron nitride (2024)
Journal Article
Shima, K., Cheng, T. S., Mellor, C. J., Beton, P. H., Elias, C., Valvin, P., …Chichibu, S. F. (2024). Cathodoluminescence spectroscopy of monolayer hexagonal boron nitride. Scientific Reports, 14(1), Article 169. https://doi.org/10.1038/s41598-023-50502-9

Cathodoluminescence (CL) spectroscopy is a suitable technique for studying the luminescent properties of optoelectronic materials because CL has no limitation on the excitable bandgap energy and eliminates ambiguous signals due to simple light scatte... Read More about Cathodoluminescence spectroscopy of monolayer hexagonal boron nitride.