Creation and characterization of He-related color centers in diamond
Jacopo Forneris, Andrea Tengattini, Sviatoslav Ditalia Tchernij,, Federico Picollo, Alfio Battiato, Paolo Traina, Ivo Degiovanni, Ekaterina, Moreva, Giorgio Brida, Veljko Grilj, Natko Skukan, Milko Jak\v{s}i\'c, Marco, Genovese, Paolo Olivero

TL;DR
This study reports the creation of novel He-related color centers in diamond with specific luminescent properties, advancing quantum applications by characterizing their formation, optical features, and dependence on processing conditions.
Contribution
It introduces and characterizes He-induced luminescent defects in diamond, revealing their formation conditions, optical signatures, and potential for quantum technologies.
Findings
He implantation creates stable luminescent centers with specific emission lines.
The emission intensity correlates with He fluence and annealing temperature.
The centers are unique to He implantation and not observed with other ions.
Abstract
Diamond is a promising material for the development of emerging applications in quantum optics, quantum information and quantum sensing. The fabrication and characterization of novel luminescent defects with suitable opto-physical properties is therefore of primary importance for further advances in these research fields. In this work we report on the investigation in the formation of photoluminescent (PL) defects upon MeV He implantation in diamond. Such color centers, previously reported only in electroluminescence and cathodoluminescence regime, exhibited two sharp emission lines at 536.5 nm and 560.5 nm, without significant phonon sidebands. A strong correlation between the PL intensities of the above-mentioned emission lines and the He implantation fluence was found in the 10^15-10^17 cm^{-2} fluence range. The PL emission features were not detected in control samples, i.e. samples…
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