Coherent singlet-triplet oscillations in a silicon-based double quantum dot
B. M. Maune (),
M. G. Borselli,
B. Huang,
T. D. Ladd,
P. W. Deelman,
K. S. Holabird,
A. A. Kiselev,
I. Alvarado-Rodriguez,
R. S. Ross,
A. E. Schmitz,
M. Sokolich,
C. A. Watson,
M. F. Gyure and
A. T. Hunter
Additional contact information
B. M. Maune: HRL Laboratories LLC, 3011 Malibu Canyon Road
M. G. Borselli: HRL Laboratories LLC, 3011 Malibu Canyon Road
B. Huang: HRL Laboratories LLC, 3011 Malibu Canyon Road
T. D. Ladd: HRL Laboratories LLC, 3011 Malibu Canyon Road
P. W. Deelman: HRL Laboratories LLC, 3011 Malibu Canyon Road
K. S. Holabird: HRL Laboratories LLC, 3011 Malibu Canyon Road
A. A. Kiselev: HRL Laboratories LLC, 3011 Malibu Canyon Road
I. Alvarado-Rodriguez: HRL Laboratories LLC, 3011 Malibu Canyon Road
R. S. Ross: HRL Laboratories LLC, 3011 Malibu Canyon Road
A. E. Schmitz: HRL Laboratories LLC, 3011 Malibu Canyon Road
M. Sokolich: HRL Laboratories LLC, 3011 Malibu Canyon Road
C. A. Watson: HRL Laboratories LLC, 3011 Malibu Canyon Road
M. F. Gyure: HRL Laboratories LLC, 3011 Malibu Canyon Road
A. T. Hunter: HRL Laboratories LLC, 3011 Malibu Canyon Road
Nature, 2012, vol. 481, issue 7381, 344-347
Abstract:
Exploiting the weak interactions between electron spins and nuclear spins in silicon-based quantum dots leads to a dephasing time two orders of magnitude greater than in analogous gallium-arsenide-based devices, demonstrating the potential of silicon as a host material for quantum information processing.
Date: 2012
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Persistent link: https://EconPapers.repec.org/RePEc:nat:nature:v:481:y:2012:i:7381:d:10.1038_nature10707
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DOI: 10.1038/nature10707
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