Publikation: Hyperfine Structure of Transition Metal Defects in SiC
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2021
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Physical Review B. American Physical Society (APS). 2021, 104, 064102. ISSN 2469-9950. eISSN 2469-9969. Available under: doi: 10.1103/PhysRevB.104.064102
Zusammenfassung
Transition metal (TM) defects in silicon carbide (SiC) are a promising platform in quantum technology, especially because some TM defects emit in the telecom band. We develop a theory for the interaction of an active electron in the D-shell of a TM defect in SiC with the TM nuclear spin and derive the effective hyperfine tensor within the Kramers doublets formed by the spin-orbit coupling. Based on our theory we discuss the possibility to exchange the nuclear and electron states with potential applications for nuclear spin manipulation and long-lived nunclear-spin based quantum memories.
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TISSOT, Benedikt, Guido BURKARD, 2021. Hyperfine Structure of Transition Metal Defects in SiC. In: Physical Review B. American Physical Society (APS). 2021, 104, 064102. ISSN 2469-9950. eISSN 2469-9969. Available under: doi: 10.1103/PhysRevB.104.064102BibTex
@article{Tissot2021-04-26T05:16:02ZHyper-53596.2,
year={2021},
doi={10.1103/PhysRevB.104.064102},
title={Hyperfine Structure of Transition Metal Defects in SiC},
volume={104},
issn={2469-9950},
journal={Physical Review B},
author={Tissot, Benedikt and Burkard, Guido},
note={Article Number: 064102}
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<dcterms:abstract xml:lang="eng">Transition metal (TM) defects in silicon carbide (SiC) are a promising platform in quantum technology, especially because some TM defects emit in the telecom band. We develop a theory for the interaction of an active electron in the D-shell of a TM defect in SiC with the TM nuclear spin and derive the effective hyperfine tensor within the Kramers doublets formed by the spin-orbit coupling. Based on our theory we discuss the possibility to exchange the nuclear and electron states with potential applications for nuclear spin manipulation and long-lived nunclear-spin based quantum memories.</dcterms:abstract>
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