Oxygen in diamond: thermal stability of ST1 spin centres and creation of oxygen-pair complexes
Paul Neugebauer, Xinxi Huang, Chloe Newsom, Christophe Arnold, Hj{\o}rdis Martelock, S\'everine Diziain, Edoardo Monnetti, Jocelyn Achard, Tobias L\"uhmann, Paolo Olivero, Jan Meijer, Julien Barjon, Alexandre Tallaire, S\'ebastien Pezzagna

TL;DR
This study investigates oxygen-related defects in diamond, focusing on the ST1 spin centre's thermal stability and formation conditions, and introduces new oxygen-centred complexes with potential applications in quantum technologies.
Contribution
It provides the first detailed analysis of the thermal stability and formation conditions of oxygen-related centres, including the ST1 spin centre, in diamond.
Findings
ST1 centre forms around 1100°C with a narrow stability range.
A new oxygen-related centre with a 584.5 nm ZPL is formed at 1500°C.
A broad 460 nm peak indicates oxygen molecule implantation effects.
Abstract
Little is known about oxygen-related defects in diamond. Recently, the promising room-temperature spin centre named ST1 was identified as an oxygen centre, but of still unknown atomic structure and thermal stability. In this work, we report on the optically active oxygen-related centres and the conditions for their formation, using ion implantation of oxygen in various conditions of depth and fluence. More specifically, we establish the temperature formation/stability range of the ST1 centre, which has a maximum at about 1100{\deg}C and is narrower than for NV centres. In these conditions, optically detected magnetic resonance (ODMR) on small ST1 ensembles was measured with a spin readout contrast of > 20% at 300K. In cathodoluminescence, the 535 nm ST1 peak is not observed. Besides, a broad peak centred at 460 nm is measured for implantation of O molecular ions. For an annealing…
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Taxonomy
TopicsDiamond and Carbon-based Materials Research · Ion-surface interactions and analysis · Advanced Materials and Semiconductor Technologies
