We present a novel approach for the optical activation of the negatively-charged silicon vacancy ( VSi-) center in ion irradiated silicon carbide (SiC) via ns-pulsed laser annealing in the 234-2180 mJ cm- 2 energy density range. The laser annealing process is investigated under 355 nm and 532 nm wavelengths at pulse energy densities below the melting threshold and validated by means of Raman spectroscopy and photoluminescence mapping. The combined effect of ns pulsed laser annealing and subsequent thermal treatment is also assessed. The results offer a promising resource for the development of integrated photonic SiC devices and could be extended to a potentially wide range of applications involving other classes of solid-state quantum emitters.

Formation of luminescent defects in 4H-SiC upon ion irradiation and ns laser annealing

Zanelli, Gabriele
First
;
Fontan, Igor;Andrini, Greta;Corte, Emilio;Nieto Hernandez, Elena;Varzi, Veronica;Amine, Nour-Hanne;Sturari, Sofia;Redolfi, Elisa;Campostrini, Matteo;Traina, Paolo;Picollo, Federico;Genovese, Marco;Ditalia Tchernij, Sviatoslav;Forneris, Jacopo
Last
2025-01-01

Abstract

We present a novel approach for the optical activation of the negatively-charged silicon vacancy ( VSi-) center in ion irradiated silicon carbide (SiC) via ns-pulsed laser annealing in the 234-2180 mJ cm- 2 energy density range. The laser annealing process is investigated under 355 nm and 532 nm wavelengths at pulse energy densities below the melting threshold and validated by means of Raman spectroscopy and photoluminescence mapping. The combined effect of ns pulsed laser annealing and subsequent thermal treatment is also assessed. The results offer a promising resource for the development of integrated photonic SiC devices and could be extended to a potentially wide range of applications involving other classes of solid-state quantum emitters.
2025
15
1
1
9
https://www.nature.com/articles/s41598-025-23259-6
Color centers; Formation yield; Ion implantation; Laser annealing; Photoluminescence; Silicon carbide; Silicon vacancy; Single-photon sources
Zanelli, Gabriele; Fontan, Igor; Andrini, Greta; Corte, Emilio; Nieto Hernandez, Elena; Varzi, Veronica; Amine, Nour-Hanne; Sturari, Sofia; Redolfi, E...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/2105552
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