Extending spin coherence times of diamond qubits by high-temperature annealing
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Title
Extending spin coherence times of diamond qubits by high-temperature annealing
Authors
Keywords
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Journal
PHYSICAL REVIEW B
Volume 88, Issue 7, Pages -
Publisher
American Physical Society (APS)
Online
2013-08-26
DOI
10.1103/physrevb.88.075206
References
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Related references
Note: Only part of the references are listed.- Room-temperature entanglement between single defect spins in diamond
- (2013) F. Dolde et al. Nature Physics
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- (2012) Toyofumi Ishikawa et al. NANO LETTERS
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- (2011) J Schwartz et al. NEW JOURNAL OF PHYSICS
- Creation of colour centres in diamond by collimated ion-implantation through nano-channels in mica
- (2011) S. Pezzagna et al. PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE
- Increasing the coherence time of single electron spins in diamond by high temperature annealing
- (2010) Boris Naydenov et al. APPLIED PHYSICS LETTERS
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- Simulations of large multi-atom vacancies in diamond
- (2010) Istvan Laszlo et al. DIAMOND AND RELATED MATERIALS
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- (2010) M.L. Markham et al. DIAMOND AND RELATED MATERIALS
- Chip-Scale Nanofabrication of Single Spins and Spin Arrays in Diamond
- (2010) David M. Toyli et al. NANO LETTERS
- Quantum register based on coupled electron spins in a room-temperature solid
- (2010) P. Neumann et al. Nature Physics
- Creation efficiency of nitrogen-vacancy centres in diamond
- (2010) S Pezzagna et al. NEW JOURNAL OF PHYSICS
- Nanoscale Engineering and Optical Addressing of Single Spins in Diamond
- (2010) Sébastien Pezzagna et al. Small
- Long-range migration of intrinsic defects during irradiation or implantation
- (2009) J W Steeds et al. JOURNAL OF PHYSICS-CONDENSED MATTER
- Ultralong spin coherence time in isotopically engineered diamond
- (2009) Gopalakrishnan Balasubramanian et al. NATURE MATERIALS
- Vertical distribution of nitrogen-vacancy centers in diamond formed by ion implantation and annealing
- (2009) Charles Santori et al. PHYSICAL REVIEW B
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