Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session D65: Defects and Dopants in Bulk Materials I
2:30 PM–5:30 PM,
Monday, March 2, 2020
Room: Mile High Ballroom 4F
Sponsoring
Unit:
DMP
Chair: Xuedan Ma, Argonne Natl Lab
Abstract: D65.00005 : Vanadium spin qubits as telecom quantum emitters in silicon carbide*
Presenter:
Gary Wolfowicz
(Center for Molecular Engineering, Materials Science Division, Argonne National Laboratory)
Authors:
Gary Wolfowicz
(Center for Molecular Engineering, Materials Science Division, Argonne National Laboratory)
Christopher Anderson
(Pritzker School of Molecular Engineering, University of Chicago)
Berk Diler
(Pritzker School of Molecular Engineering, University of Chicago)
Oleg G. Poluektov
(Chemical Sciences and Engineering Division, Argonne National Laboratory)
Joseph P Heremans
(Center for Molecular Engineering, Materials Science Division, Argonne National Laboratory)
David Awschalom
(Pritzker School of Molecular Engineering, University of Chicago)
We characterize the complex d1 orbital physics in vanadium ensembles in all five sites available in 4H- and 6H-SiC. The optical transitions are observed to be sensitive to mass shifts from the distribution of nearest neighbor silicon and carbon isotopes, enabling optically resolved nuclear spin registers. Optically detected magnetic resonance of ground and excited states’ spin transitions reveal diverse hyperfine interactions with the vanadium nuclear spin and offer clock transitions for use as quantum memories. Finally, we demonstrate coherent quantum control of the spin state at 3.3 K. These results provide a path for solid-state telecom emitters for quantum applications.
[1] G. Wolfowicz, et al., arXiv :1908.09817 (2019)
*This work is supported by AFOSR, DOE, DARPA and ONR.
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